
| Title | Author | Year | SCOPUS | PUBMED | ISI | TCI | |
|---|---|---|---|---|---|---|---|
| 1. | Biochelation cartridge for the solid-phase extraction of trace metals | Srijaranai, S. | 1990 | ||||
| 2. | High-performance liquid chromatographic separation of metal ions using aspartic acid β-hydroxamate as a model siderophore | Srijaranai, S. | 1992 | ||||
| 3. | Research and development topics in Analytical Chemistry | Ruangviriyachai, C. Srijaranai, S. Ryan, N. Glennon, J.D. |
1992 | ||||
| 4. | Simplex optimization of ion-pair reversed-phase high performance liquid chromatographic analysis of some heavy metals | Srijaranai, S. Burakham, R. Deming, R.L. Khammeng, T. |
2002 | ||||
| 5. | Use of the simplex method to optimize the mobile phase for the micellar chromatographic separation of inorganic anions | Srijaranai, S. Burakham, R. Khammeng, T. Deming, R.L. |
2002 | ||||
| 6. | Supercritical fluid generated stationary phases for liquid chromatography and capillary electrochromatography | Srijaranai, S. Fischer, G.W. |
2003 | ||||
| 7. | Effect of bound copper(H) on the LC separation of selected phenols using an aminophosphonic acid silica stationary phase | W Siriangkhawut S Srijaranai C Ruksakulpiwat RL Deming |
2004 | ||||
| 8. | Effect of bound copper(II) on the LC separation of selected phenols using an aminophosphonic acid silica stationary phase | Srijaranai, S. Siriangkhawut, W. Srijaranai, S. Ruksakulpiwat, C. Deming, R.L. |
2004 | ||||
| 9. | Flow-injection in-line complexation for ion-pair reversed phase high performance liquid chromatography of some metal-4-(2-pyridylazo) resorcinol chelates | Srijaranai, S. Chanpaka, S. Kukusamude, C. |
2006 | ||||
| 10. | Capillary zone electrophoresis of organic acids in beverages | Santalad, A. Teerapornchaisit, P. Burakham, R. Srijaranai, S. |
2007 | ||||
| 11. | Field-amplified sample injection and in-capillary derivatization for capillary electrophoretic analysis of metal ions in local wines | Santalad, A. Burakham, R. Srijaranai, S. |
2007 | ||||
| 12. | High-performance liquid chromatography with sequential injection for online precolumn derivatization of some heavy metals | Burakham, R. Srijaranai, S. |
2007 | ||||
| 13. | Pre-capillary derivatisation and capillary zone electrophoresis for amino acids analysis in beverages | Santalad, A. Teerapornchaisit, P. Burakham, R. Srijaranai, S. |
2007 | ||||
| 14. | Acid-induced cloud-point extraction coupled to spectrophotometry for the determination of carbaryl residues in waters and vegetables | Santalad, A. Srijaranai, S. Burakham, R. Sakai, T. Deming, R.L. |
2008 | ||||
| 15. | Cloud-point extraction and reversed-phase high-performance liquid chromatography for the determination of carbamate insecticide residues in fruits | Santalad, A. Srijaranai, S. Burakham, R. Deming, R.L. |
2009 | ||||
| 16. | Erratum to Acid-induced cloud-point extraction coupled to spectrophotometry for the determination of carbaryl residues in waters and vegetables, [Microchem. J. (2008), 90, 50-55] | Santalad, A. Srijaranai, S. Burakham, R. Sakai, T. Deming, R.L. |
2010 | ||||
| 17. | High performance liquid chromatographic analysis of phenolic compounds and their antioxidant activities in rice varieties | Vichapong, J. Sookserm, M. Srijesdaruk, V. Swatsitang, P. Srijaranai, S. |
2010 | ||||
| 18. | Micellar electrokinetic chromatography with amperometric detection and off-line solid-phase extraction for analysis of carbamate insecticides | Santalad, A. Zhou, L. Burakham, R. Srijaranai, S. |
2010 | ||||
| 19. | Mixed micelle-cloud point extraction for the analysis of penicillin residues in bovine milk by high performance liquid chromatography | Kukusamude, C. Santalad, A. Boonchiangma, S. Burakham, R. Srijaranai, S. |
2010 | ||||
| 20. | Retention and selectivity properties of carbamate pesticides on novel polar-embedded stationary phases | Santalad, A. Srijaranai, S. Yamen, H. |
2010 | ||||
| 21. | Use of surfactant as mobile phase additive in LC for simultaneous determination of metal-pyrrolidine dithiocarbamate chelates | Butwong, N. Burakham, R. Srijaranai, S. |
2010 | ||||
| 22. | A simplified spectrophotometric method for the determination of inulin in Jerusalem artichoke (Helianthus tuberosus L.) tubers | Saengkanuk, A. Nuchadomrong, S. Jogloy, S.S. Patanothai, A. Srijaranai, S. |
2011 | ||||
| 23. | Catanionic surfactant ambient cloud point extraction and high-performance liquid chromatography for simultaneous analysis of organophosphorus pesticide residues in water and fruit juice samples. | Seebunrueng, K. Santaladchaiyakit, Y. Soisungnoen, P. Srijaranai, S. |
2011 | ||||
| 24. | Chemical compositions and non-enzymatic browning compounds of thai honey: A kinetic study | Boonchiangma, S. Chanthai, S. Srijarenai, S. Srijaranai, S. |
2011 | ||||
| 25. | Determination of arsenic based on quenching of CdS quantum dots fluorescence using the gas-diffusion flow injection method | Butwong, N. Noipa, T. Burakham, R. Srijaranai, S. Ngeontae, W. |
2011 | ||||
| 26. | New approach for evaluation of the antioxidant capacity based on scavenging DPPH free radical in micelle systems | Noipa, T. Srijaranai, S. Tuntulani, T. Ngeontae, W. |
2011 | ||||
| 27. | Rapid assessment of inulin content in Helianthus tuberosus L. tubers | Puangbut, D. Jogloy, S.S. Srijaranai, S. Vorasoot, N. Kesmala, T. Patanothai, A. |
2011 | ||||
| 28. | Room temperature imidazolium ionic liquid: A solvent for extraction of carbamates prior to liquid chromatographic analysis | Vichapong, J. Burakham, R. Srijaranai, S. |
2011 | ||||
| 29. | Sequential injection-bead injection-lab-on-valve coupled to high-performance liquid chromatography for online renewable micro-solid-phase extraction of carbamate residues in food and environmental samples | Vichapong, J. Burakham, R. Srijaranai, S. |
2011 | ||||
| 30. | Use of 1-(2-pyridylazo)-2-naphthol as the post column reagent for ion exchange chromatography of heavy metals in environmental samples | Srijaranai, S. Santaladchaiyakit, Y. Khameng, T. Deming, R.L. |
2011 | ||||
| 31. | A simplified ultrasound-assisted cloud-point extraction method coupled with high performance liquid chromatography for residue analysis of benzimidazole anthelmintics in water and milk samples | Santaladchaiyakit, Y. Srijaranai, S. |
2012 | ||||
| 32. | Comparison of micelle-mediated extraction and diazotized 2,4-dimethoxyaniline methods for the simultaneous determination of carbamate insecticides by HPLC-UV | Santaladchaiyakit, Y. Srijaranai, S. |
2012 | ||||
| 33. | Determination of organophosphorus pesticides using dispersive liquid-liquid microextraction combined with reversed electrode polarity stacking mode - Micellar electrokinetic chromatography | Soisungnoen, P. Burakham, R. Srijaranai, S. |
2012 | ||||
| 34. | Determination of six pyrethroid insecticides in fruit juice samples using dispersive liquid-liquid microextraction combined with high performance liquid chromatography | Boonchiangma, S. Ngeontae, W. Srijaranai, S. |
2012 | ||||
| 35. | Genotypic variability and genotype by environment interactions for inulin content of Jerusalem artichoke germplasm | Puttha, R. Jogloy, S.S. Wangsomnuk, P.P. Srijaranai, S. Kesmala, T. Patanothai, A. |
2012 | ||||
| 36. | Green extraction using catanionic surfactants of trimethyltetradecyl ammonium bromide-sodium dodecyl sulfate for preconcentration of organophosphorus pesticides in fruit samples | Seebunrueng, K. Santaladchaiyakit, Y. Srijaranai, S. |
2012 | ||||
| 37. | High performance liquid chromatography for the simultaneous analysis of penicillin residues in beef and milk using ion-paired extraction and binary water-acetonitrile mixture | Kukusamude, C. Burakham, R. Srijaranai, S. |
2012 | ||||
| 38. | Influence of planting date and temperature on inulin content in Jerusalem artichoke (Helianthus tuberosus L.) | Puangbut, D. Jogloy, S.S. Vorasoot, N. Srijaranai, S. Kesmala, T. Holbrook, C.C. Patanothai, A. |
2012 | ||||
| 39. | Methodological aspects of sample preparation for the determination of carbamate residues: A review | Santaladchaiyakit, Y. Srijaranai, S. Burakham, R. |
2012 | ||||
| 40. | Reversed Electrode Polarity Stacking Sample Preconcentration Combined with Micellar Electrokinetic Chromatography for the Analysis of Carbamate Insecticide Residues in Fruit Juices | Santalad, A. Srijaranai, S. Burakham, R. |
2012 | ||||
| 41. | Role of different salts on cloud-point extraction of isoprocarb and promecarb insecticides followed by high-performance liquid chromatography | Santalad, A. Burakham, R. Srijaranai, S. Srijaranai, S. Deming, R.L. |
2012 | ||||
| 42. | Simultaneous determination of heavy metals in drinking waters and wines by methods: Ion pair-reversed phase high performance liquid chromatography and capillary zone electrophoresis | Pimrote, W. Santaladchaiyakit, Y. Kukusamude, C. Sakai, T. Srijaranai, S. |
2012 | ||||
| 43. | Speciation of arsenic (III) and arsenic (V) based on quenching of CdS quantum dots fluorescence using hybrid sequential injection-stopped flow injection gas-diffusion system | Butwong, N. Srijaranai, S. Ngeontae, W. Burakham, R. |
2012 | ||||
| 44. | Study on the effect of chain-length compatibility of mixed anionic-cationic surfactants on the cloud-point extraction of selected organophosphorus pesticides | Seebunrueng, K. Santaladchaiyakit, Y. Srijaranai, S. |
2012 | ||||
| 45. | Alternative spectrophotometric method for determination of bilirubin and urobilinogen in urine samples using simultaneous injection effective mixing flow analysis | Vichapong, J. Burakham, R. Srijaranai, S. Sakai, T. |
2013 | ||||
| 46. | Detection of silver(I) ion based on mixed surfactant-adsorbed CdS quantum dots | Butwong, N. Ngeontae, W. Burakham, R. Srijaranai, S. |
2013 | ||||
| 47. | Enhancement of sensitivity for the spectrophotometric determination of carbaryl using dispersive liquid microextraction combined with dispersive μ-solid phase extraction | Mukdasai, S. Thomas, C.L. Srijaranai, S. |
2013 | ||||
| 48. | Modified QuEChERS and cloud-point extraction combined with visible spectrophotometric detection for carbaryl residue analysis in vegetables | Karnsa-ard, S. Santaladchaiyakit, Y. Srijaranai, S. Srijaranai, S. |
2013 | ||||
| 49. | Preconcentration and Simultaneous Analysis of Benzimidazole Anthelmintics in Milk Samples by Ultrasound-Assisted Surfactant-Enhanced Emulsification Microextraction and High-Performance Liquid Chromatography | Santaladchaiyakit, Y. Srijaranai, S. |
2013 | ||||
| 50. | The simultaneous analysis of sulfonylurea herbicide residues in fruit samples using ultrasound-assisted surfactant-enhanced emulsification microextraction coupled with high-performance liquid chromatography | Seebunrueng, K. Santaladchaiyakit, Y. Srijaranai, S. |
2013 | ||||
| 51. | Vortex-assisted surfactant-enhanced-emulsification liquid-liquid microextraction with solidification of floating organic droplet combined with HPLC for the determination of neonicotinoid pesticides | Vichapong, J. Burakham, R. Srijaranai, S. |
2013 | ||||
| 52. | A highly selective electrochemical sensor for l -tryptophan based on a screen-printed carbon electrode modified with poly-p-phenylenediamine and CdS quantum dots | Boonchiangma, S. Srijaranai, S. Tuntulani, T. Ngeontae, W. |
2014 | ||||
| 53. | A Highly Sensitive Hydrogen Peroxide Biosensor Based on Hemoglobin Immobilized on Cadmium Sulfide Quantum Dots/Chitosan Composite Modified Glassy Carbon Electrode | Butwong, N. Zhou, L. Moore, E.J. Srijaranai, S. |
2014 | ||||
| 54. | Alternative solvent-based methyl benzoate vortex-assisted dispersive liquid-liquid microextraction for the high-performance liquid chromatographic determination of benzimidazole fungicides in environmental water samples | Santaladchaiyakit, Y. Srijaranai, S. |
2014 | ||||
| 55. | Anionic microemulsion to solvent stacking for on-line sample concentration of cationic analytes in capillary electrophoresis | Kukusamude, C. Srijaranai, S. Quirino, J.P. |
2014 | ||||
| 56. | A sensitive nonenzymatic hydrogen peroxide sensor using cadmium oxide nanoparticles/multiwall carbon nanotube modified glassy carbon electrode | Butwong, N. Zhou, L. Burakham, R. Moore, E.J. Srijaranai, S. |
2014 | ||||
| 57. | Cloud-point extraction and reversed-phase high performance liquid chromatography for analysis of phenolic compounds and their antioxidant activity in Thai local wines | Vichapong, J. Santaladchaiyakit, Y. Burakham, R. Srijaranai, S. |
2014 | ||||
| 58. | Cloud point sample clean-up and capillary zone electrophoresis with field enhanced sample injection and micelle to solvent stacking for the analysis of herbicides in milk | Kukusamude, C. Srijaranai, S. Quirino, J.P. |
2014 | ||||
| 59. | Comparison of electrochemical property between multiwalled carbon nanotubes and porous graphitized carbon monolith modified glassy carbon electrode for the simultaneous determination of ascorbic acid and uric acid | Mukdasai, S. Moore, E.J. Nesterenko, E.P. Srijaranai, S. |
2014 | ||||
| 60. | Comprehensive analysis of pharmaceutical products using simultaneous mixed-mode (ion-exchange/reversed-phase) and hydrophilic interaction liquid chromatography | Kazarian, A.A. Soisungnoen, P. Burakham, R. Srijaranai, S. |
2014 | ||||
| 61. | In-capillary derivatization and preconcentration for CE of metal ions as their phenanthroline complexes | Boonchiangma, S. Kukusamude, C. Ngeontae, W. Srijaranai, S. |
2014 | ||||
| 62. | Low Toxic Organic Solvent-Based Ultrasound-Assisted Emulsification Microextraction for the Residue Analysis of Benzimidazole Anthelmintics in Egg Samples by High Performance Liquid Chromatography | Santaladchaiyakit, Y. Srijaranai, S. Burakham, R. |
2014 | ||||
| 63. | Simultaneous Analysis of Inorganic Monovalent Anions/Cations Using Mixed-Bed Single-Column Ion Chromatography | Kazarian, A.A. Soisungnoen, P. Burakham, R. Srijaranai, S. |
2014 | ||||
| 64. | Stacking and separation of neutral and cationic analytes in interface-free two-dimensional heart-cutting capillary electrophoresis | Kukusamude, C. Srijaranai, S. Quirino, J.P. |
2014 | ||||
| 65. | Surfactant-Solvent-Based Quaternary Component Emulsification Microextraction Followed by High-Performance Liquid Chromatography for the Simultaneous Analysis of Benzimidazole Anthelmintics in Milk Samples | Santaladchaiyakit, Y. Srijaranai, S. |
2014 | ||||
| 66. | Two-step microextraction combined with high performance liquid chromatographic analysis of pyrethroids in water and vegetable samples | Mukdasai, S. Thomas, C.L. Srijaranai, S. |
2014 | ||||
| 67. | Ultrasound-assisted dispersive liquid-liquid microextraction combined with high performance liquid chromatography for sensitive determination of five biogenic amines in fermented fish samples | Donthuan, J. Yunchalard, S. Srijaranai, S. |
2014 | ||||
| 68. | Vortex-assisted low density solvent based demulsified dispersive liquid-liquid microextraction and high-performance liquid chromatography for the determination of organophosphorus pesticides in water samples | Seebunrueng, K. Santaladchaiyakit, Y. Srijaranai, S. |
2014 | ||||
| 69. | Vortex-assisted surfactant-enhanced-emulsification liquid liquid microextraction of biogenic amines in fermented foods before their simultaneous analysis by high-performance liquid chromatography | Donthuan, J. Yunchalard, S. Srijaranai, S. |
2014 | ||||
| 70. | Determination of Benzimidazole Anthelminthics in Eggs by Advanced Microextraction with High-Performance Liquid Chromatography | Vichapong, J. Santaladchaiyakit, Y. Burakham, R. Srijaranai, S. |
2015 | ||||
| 71. | Determination of benzimidazole anthelmintics using HPLC after vortex-assisted mixed anionic-cationic surfactant-enhanced emulsification microextraction with solidification of floating organic droplet procedure | Vichapong, J. Santaladchaiyakit, Y. Burakham, R. Kanchanamayoon, W. Srijaranai, S. |
2015 | ||||
| 72. | Electrodeposition of palladium nanoparticles on porous graphitized carbon monolith modified carbon paste electrode for simultaneous enhanced determination of ascorbic acid and uric acid | Mukdasai, S. Crowley, U.M. Nesterenko, E.P. Srijaranai, S. Moore, E.J. |
2015 | ||||
| 73. | In-coupled syringe assisted octanol-water partition microextraction coupled with high-performance liquid chromatography for simultaneous determination of neonicotinoid insecticide residues in honey | Vichapong, J. Burakham, R. Srijaranai, S. |
2015 | ||||
| 74. | Ion Chromatographic Analysis of Monosaccharides and Disaccharides in Raw Sugar | Suksom, W. Wannachai, W. Boonchiangma, S. Chanthai, S. Srijaranai, S. |
2015 | ||||
| 75. | Ionic Liquid-Based Vortex-Assisted Liquid–Liquid Microextraction for Simultaneous Determination of Neonicotinoid Insecticides in Fruit Juice Samples | Vichapong, J. Burakham, R. Srijaranai, S. |
2015 | ||||
| 76. | New eco-friendly extraction of anionic analytes based on formation of layered double hydroxides | Sansuk, S. Nanan, S. Srijaranai, S. |
2015 | ||||
| 77. | Preparation of Inulin Powder from Jerusalem Artichoke (Helianthus tuberosus L.) Tuber | Srinameb, B.O. Nuchadomrong, S. Jogloy, S.S. Patanothai, A. Srijaranai, S. |
2015 | ||||
| 78. | Reversed Phase Chromatographic Analysis of 13 Amino Acids in Honey Samples | Boonchiangma, S. Ratchakrut, P. Chanthai, S. Srijaranai, S. |
2015 | ||||
| 79. | Variation of inulin content, inulin yield and water use efficiency for inulin yield in Jerusalem artichoke genotypes under different water regimes | Puangbut, D. Jogloy, S.S. Vorasoot, N. Srijaranai, S. Holbrook, C.C. Patanothai, A. |
2015 | ||||
| 80. | Vortex-assisted low density solvent liquid-liquid microextraction and salt-induced demulsification coupled to high performance liquid chromatography for the determination of five organophosphorus pesticide residues in fruits | Seebunrueng, K. Santaladchaiyakit, Y. Srijaranai, S. |
2015 | ||||
| 81. | A coacervative extraction based on single-chain and double-chain cationic surfactants | Kukusamude, C. Quirino, J.P. Srijaranai, S. |
2016 | ||||
| 82. | Alternative Liquid–Liquid Microextraction as Cleanup for Determination of Neonicotinoid Pesticides Prior HPLC Analysis | Vichapong, J. Burakham, R. Srijaranai, S. |
2016 | ||||
| 83. | A New Approach for Removing Anionic Organic Dyes from Wastewater Based on Electrostatically Driven Assembly | Sansuk, S. Srijaranai, S. Srijaranai, S. |
2016 | ||||
| 84. | A preconcentration method for analysis of neonicotinoids in honey samples by ionic liquid-based cold-induced aggregation microextraction | Vichapong, J. Burakham, R. Santaladchaiyakit, Y. Srijaranai, S. |
2016 | ||||
| 85. | A sensitive and selective spectrophotometric method for 2-chlorophenol based on solid phase extraction with mixed hemimicelle magnetic nanoparticles | Mukdasai, S. Butwong, N. Thomas, C.L. Srijaranai, S. Srijaranai, S. |
2016 | ||||
| 86. | Determination of β-agonists in Porcine Meats by Ion-Pair Extraction and High Performance Liquid Chromatography | Vichapong, J. Burakham, R. Srijaranai, S. |
2016 | ||||
| 87. | Ionic liquid-based vortex-assisted liquid–liquid microextraction for simultaneous determination of neonicotinoid insecticides in fruit juice samples | Vichapong, J. Burakham, R. Srijaranai, S. |
2016 | ||||
| 88. | Preconcentration and Simultaneous Determination of Heterocyclic Aromatic Amines in Grilled Pork Samples by Ion-Pair-Based Surfactant-Assisted Dispersive Liquid-Liquid Microextraction and High-Performance Liquid Chromatography | Vichapong, J. Srijaranai, S. Santaladchaiyakit, Y. Kanchanamayoon, W. Burakham, R. |
2016 | ||||
| 89. | Air-Agitated Cloud-Point Extraction Coupled with High-Performance Liquid Chromatography for Determination of Heterocyclic Aromatic Amines in Smoked Sausages | Vichapong, J. Burakham, R. Srijaranai, S. |
2017 | ||||
| 90. | Cationic micellar precipitation for simultaneous preconcentration of benzimidazole anthelmintics in milk samples by high-performance liquid chromatography | Vichapong, J. Santaladchaiyakit, Y. Srijaranai, S. Burakham, R. |
2017 | ||||
| 91. | Development of supramolecular solvent based microextraction prior to high performance liquid chromatography for simultaneous determination of phenols in environmental water | Seebunrueng, K. Santaladchaiyakit, Y. Srijaranai, S. |
2017 | ||||
| 92. | Ionic liquid-assisted liquid–liquid microextraction based on the solidification of floating organic droplet in sample preparation for simultaneous determination of herbicide residues in fruits | Vichapong, J. Santaladchaiyakit, Y. Burakham, R. Srijaranai, S. |
2017 | ||||
| 93. | Methyl salicylate-based vortex-assisted surfactant-enhanced emulsification microextraction and HPLC for determination of fungicides in honey samples | Santaladchaiyakit, Y. Srijaranai, S. |
2017 | ||||
| 94. | New approach for detection of chromate ion by preconcentration with mixed metal hydroxide coupled with fluorescence sensing of copper nanoclusters | Sansuk, S. Srijaranai, S. Tuntulani, T. Saiyasombat, C. Ngeontae, W. |
2017 | ||||
| 95. | The alternative use of layered double hydroxides as extraction medium coupled with microcomplexation for determination of phosphate in water samples | Sansuk, S. Srijaranai, S. |
2017 | ||||
| 96. | The use of dissolvable layered double hydroxide components in an in situ solid-phase extraction for chromatographic determination of tetracyclines in water and milk samples | Sansuk, S. Santaladchaiyakit, Y. Srijaranai, S. |
2017 | ||||
| 97. | A highly sensitive electrochemical determination of L-tryptophan in the presence of ascorbic acid and uric acid using in situ addition of tetrabutylammonium bromide on the ß-cyclodextrin incorporated multi-walled carbon nanotubes modified electrode | Mukdasai, S. Ngeontae, W. Srijaranai, S. |
2018 | ||||
| 98. | A simple dispersive-micro-solid phase extraction based on a colloidal silica sorbent for the spectrophotometric determination of Fe(II) in the presence of tetrabutylammonium bromide | S. Metarwiwinit S. Mukdasai C. Poonsawat S. Srijaranai |
2018 | ||||
| 99. | A simple solvent based microextraction for high performance liquid chromatographic analysis of aflatoxins in rice samples | Seebunrueng, K. Boonchiangma, S. Srijaranai, S. |
2018 | ||||
| 100. | Cysteamine Capped Silver Nanoparticles and Single-walled Carbon Nanotubes Composite Coated on Glassy Carbon Electrode for Simultaneous Analysis of Hydroquinone and Catechol | Butwong, N. Srijaranai, S. |
2018 | ||||
| 101. | Preconcentration of trace neonicotinoid insecticide residues using vortex-assisted dispersive micro solid-phase extraction with montmorillonite as an efficient sorbent | Santaladchaiyakit, Y. Srijaranai, S. Vichapong, J. |
2018 | ||||
| 102. | Silver-doped CdS quantum dots incorporated into chitosan-coated cellulose as a colorimetric paper test stripe for mercury | Butwong, N. Soisungnoen, P. Chotichayapong, C. Srijaranai, S. |
2018 | ||||
| 103. | Ultrasonically modified amended-cloud point extraction for simultaneous pre-concentration of neonicotinoid insecticide residues | Vichapong, J. Burakham, R. Santaladchaiyakit, Y. Srijaranai, S. |
2018 | ||||
| 104. | Vortex-assisted low density solvent and surfactant based dispersive liquid-liquid microextraction for sensitive spectrophotometric determination of cobalt | Seebunrueng, K. Srijaranai, S. |
2018 | ||||
| 105. | A novel colorimetric paper sensor based on the layer-by-layer assembled multilayers of surfactants for the sensitive and selective determination of total antioxidant capacity | Mukdasai, S. Uppachai, P. Srijaranai, S. |
2019 | ||||
| 106. | A simple capture-release strategy based on an instantly formed mixed metal hydroxide sorbent for determination of salicylic acid in cosmetics | Srijaranai, S. Sansuk, S. |
2019 | ||||
| 107. | Β-Cyclodextrin assisted liquid–liquid microextraction based on solidification of the floating organic droplets method for determination of neonicotinoid residues | Vichapong, J. Burakham, R. Santaladchaiyakit, Y. Srijaranai, S. |
2019 | ||||
| 108. | Magnetic stirring assisted demulsification dispersive liquid-liquid microextraction for preconcentration of polycyclic aromatic hydrocarbons in grilled pork samples | Vichapong, J. Santaladchaiyakit, Y. Burakham, R. Srijaranai, S. |
2019 | ||||
| 109. | Modified Vortex-assisted Surfactant-enhanced Emulsification Microextraction using Methyl Benzoate for the Preconcentration of Fungicides in Fruit Juice Samples and Determination by High-performance Liquid Chromatography | Srijaranai, S. | 2019 | ||||
| 110. | Rapid removal and efficient recovery of tetracycline antibiotics in aqueous solution using layered double hydroxide components in an in situ-adsorption process | Srijaranai, S. Sansuk, S. |
2019 | ||||
| 111. | Supramolecular solvent-based liquid phase microextraction combined with ion-pairing reversed-phase HPLC for the determination of quats in vegetable samples | Srijaranai, S. Boonchiangma, S. |
2019 | ||||
| 112. | Vesicular supramolecular solvent-based microextraction followed by high performance liquid chromatographic analysis of tetracyclines | Boonchiangma, S. Mukdasai, S. Srijaranai, S. |
2019 | ||||
| 113. | An Alternative Spectrophotometric Determination of Carbaryl Insecticide Residues in Water Samples Using the Cerium-Catalyzed Belousov-Zhabotinsky Oscillating Reaction | Santaladchaiyakit, Y. Sansuk, S. Srijaranai, S. |
2020 | ||||
| 114. | An eco-friendly hydrophobic deep eutectic solvent-based dispersive liquid-liquid microextraction for the determination of neonicotinoid insecticide residues in water, soil and egg yolk samples | Vichapong, J. Santaladchaiyakit, Y. Burakham, R. Srijaranai, S. |
2020 | ||||
| 115. | A new environment-friendly supramolecular solvent-based liquid phase microextraction coupled to high performance liquid chromatography for simultaneous determination of six phenoxy acid herbicides in water and rice samples | Seebunrueng, K. Srijaranai, S. |
2020 | ||||
| 116. | A rapid and simple method for the removal of dyes and organophosphorus pesticides from water and soil samples using deep eutectic solvent embedded sponge | Mukdasai, S. Boonchiangma, S. Sansuk, S. Srijaranai, S. |
2020 | ||||
| 117. | A simple in syringe low density solvent-dispersive liquid liquid microextraction for enrichment of some metal ions prior to their determination by high performance liquid chromatography in food samples | Mukdasai, S. Srijaranai, S. |
2020 | ||||
| 118. | Cloud-point extraction coupled to in-situ metathesis reaction of deep eutectic solvents for preconcentration and liquid chromatographic analysis of neonicotinoid insecticide residues in water, soil and urine samples | Vichapong, J. Santaladchaiyakit, Y. Srijaranai, S. |
2020 | ||||
| 119. | Dissolvable Mg/Al layered double hydroxides and surfactant as an extractant for trace analysis of benzoylurea insecticides by high performance liquid chromatography | Santaladchaiyakit, Y. Srijaranai, S. |
2020 | ||||
| 120. | Erratum to: Modified Vortex-Assisted Surfactant-Enhanced Emulsification Microextraction Using Methyl Benzoate for the Preconcentration of Fungicides in Fruit Juice Samples and Analysis by High-Performance Liquid Chromatography (Journal of Analytical Chemistry, (2019), 74, 10, (1027-1034), 10.1134/S1061934819100095) | Srijaranai, S. | 2020 | ||||
| 121. | Mixed micelle-mediated cloud point extraction coupled to spectrophotometry for fast screening of salbutamol in wastewater, pig feed and pork samples | Vichapong, J. Santaladchaiyakit, Y. Burakham, R. Srijaranai, S. |
2020 | ||||
| 122. | Supramolecular electrochemical sensor for dopamine detection based on self-assembled mixed surfactants on gold nanoparticles deposited graphene oxide | Uppachai, P. Srijaranai, S. Mukdasai, S. |
2020 | ||||
| 123. | An electrochemical sensor for voltammetric detection of ciprofloxacin using a glassy carbon electrode modified with activated carbon, gold nanoparticles and supramolecular solvent | Gissawong, N. Srijaranai, S. Boonchiangma, S. Uppachai, P. Seehamart, K. Jantrasee, S. Moore, E.J. Mukdasai, S. |
2021 | ||||
| 124. | A novel liquid colorimetric probe for highly selective and sensitive detection of lead (II) | Laosuwan, M. Poonsawat, C. Burakham, R. Srijaranai, S. Mukdasai, S. |
2021 | ||||
| 125. | A simple and sensitive colorimetric sensor for cadmium (II) detection based on self-assembled trimethyl tetradecyl ammonium bromide and murexide on colloidal silica | Mukdasai, K. Santaladchaiyakit, Y. Srijaranai, S. Mukdasai, S. |
2021 | ||||
| 126. | Co-precipitation based on layered double hydroxides and anionic surfactants for preconcentration of six benzoylurea insecticides in soft drinks before simultaneous analysis by high-performance liquid chromatography | Santaladchaiyakit, Y. Gissawong, N. Srijaranai, S. |
2021 | ||||
| 127. | In situ self-assembled coating of surfactant-mixed metal hydroxide on Fe |
Seebunrueng, K. Ruangchai, S. Sansuk, S. Srijaranai, S. |
2021 | ||||
| 128. | Surface Plasmon Resonance Sensor for Novel Detection of Histidine Based on the Hg2+ Induced Aggregation of AuNPs Followed by Preconcentration with Chitosan Gel as Solid Phase Biosorbent | Uppa, Y. Srijaranai, S. Chanthai, S. |
2021 | ||||
| 129. | A facile nonenzymatic electrochemical sensor based on copper oxide nanoparticles deposited on activated carbon for the highly sensitive detection of methyl parathion | Uppachai, P. Butwong, N. Jantrasee, S. Loiha, S. Srijaranai, S. Mukdasai, S. |
2022 | ||||
| 130. | An In Situ Formation of Ionic Liquid for Enrichment of Triazole Fungicides in Food Applications Followed by HPLC Determination | Kachangoon, R. Vichapong, J. Santaladchaiyakit, Y. Srijaranai, S. |
2022 | ||||
| 131. | A Simple Dispersive Micro-Solid Phase Extraction for Determination of Neonicotinoid Insecticides in Surface Water and Fruit Juice Samples | Vichapong, J. Santaladchaiyakit, Y. Burakham, R. Srijaranai, S. |
2022 | ||||
| 132. | Electrochemical detection of methyl parathion using calix[6]arene/bismuth ferrite/multiwall carbon nanotube-modified fluorine-doped tin oxide electrode | Gissawong, N. Srijaranai, S. Nanan, S. Mukdasai, K. Uppachai, P. Teshima, N. Mukdasai, S. |
2022 | ||||
| 133. | Facile liquid colorimetric sensor using high-density deep eutectic solvent for trace detection and speciation of iron in milk | Laosuwan, M. Gissawong, N. Butwong, N. Srijaranai, S. Mukdasai, S. |
2022 | ||||
| 134. | Green fabrication of Moringa oleifera seed as efficient biosorbent for selective enrichment of triazole fungicides in environmental water, honey and fruit juice samples | Vichapong, J. Santaladchaiyakit, Y. Srijaranai, S. |
2022 | ||||
| 135. | In-situ formation of modified nickel–zinc-layered double hydroxide followed by HPLC determination of neonicotinoid insecticide residues | Vichapong, J. Burakham, R. Santaladchaiyakit, Y. Srijaranai, S. |
2022 | ||||
| 136. | Modified Peanut Shell as an Eco-Friendly Biosorbent for Effective Extraction of Triazole Fungicide Residues in Surface Water and Honey Samples before Their Determination by High-Performance Liquid Chromatography | Khiaophong, W. Jaroensan, J. Kachangoon, R. |
2022 | ||||
| 137. | Preconcentration of triazole fungicides using effervescent assisted switchable hydrophilicity solvent-based microextraction prior to high-performance liquid chromatographic analysis | Palasak, J. Buppasang, R. Kachangoon, R. |
2022 | ||||
| 138. | Ringer Tablet-Based Micelle-Mediated Extraction-Solvent Back Extraction Coupled with High-Performance Liquid Chromatography for Preconcentration and Determination of Neonicotinoid Pesticides | Vichapong, J. Burakham, R. Santaladchaiyakit, Y. Srijaranai, S. |
2022 | ||||
| 139. | Simultaneous Preconcentration of Triazole Fungicide Residues Using In-Situ Coacervative Extraction Based on a Double-Solvent Supramolecular System Prior to High Performance Liquid Chromatographic Analysis | Buppasang, R. Palasak, J. Kachangoon, R. |
2022 | ||||
| 140. | Ethyl salicylate and ethyl benzoate for vortex-assisted surfactant-enhanced emulsification microextraction of fungicides in water samples and analysis by high-performance liquid chromatography | Santaladchaiyakit, Y. Srijaranai, S. |
2023 | ||||
| 141. | Sample Preparation Approach by In Situ Formation of Supramolecular Solvent Microextraction for Enrichment of Neonicotinoid Insecticide Residues | Kachangoon, R. Vichapong, J. Santaladchaiyakit, Y. Burakham, R. Srijaranai, S. |
2023 | ||||
| 142. | A novel electrochemical sensor based on ꞵ-cyclodextrin/bismuth oxybromide/multi-walled carbon nanotubes modified electrode with in situ addition of tetrabutylammonium bromide for the simultaneous detection and degradation of tebuconazole | Wannasri, N. Uppachai, P. Senasu, T. Nanan, S. Katrun, P. Vichapong, J. Butwong, N. Srijaranai, S. Mukdasai, S. |
2024 | ||||
| 143. | Biological Monitoring of Glyphosate Exposure among Knapsack Sprayers in Khon Kaen, Thailand | Chaiklieng, S. Uengchuen, K. Gissawong, N. Srijaranai, S. Autrup, H. |
2024 | ||||
| 144. | A simple colorimetric sensor based on a new deep eutectic solvent for the detection of chromium | Seesuan, T. Butwong, N. Srijaranai, S. Mukdasai, S. |
2025 | Count | 143 | 0 | 6 | 0 |
| Title | Authors | Year | Publication name | Cited count | ||||||||
|---|---|---|---|---|---|---|---|---|---|---|---|---|
| < 2020 | 2021 | 2022 | 2023 | 2024 | 2025 | รวม | ||||||
| 1. | Biochelation cartridge for the solid-phase extraction of trace metals | Srijaranai, S. | 1990 |
Analyst 5 (115), pp. 627-630 |
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| 2. | High-performance liquid chromatographic separation of metal ions using aspartic acid β-hydroxamate as a model siderophore | Srijaranai, S. | 1992 |
Journal of Chromatography A 2 (626), pp. 277-283 |
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| 3. | Research and development topics in Analytical Chemistry | Ruangviriyachai, C. Srijaranai, S. Ryan, N. Glennon, J.D. |
1992 |
Analytical Proceedings 1 (29), pp. 10-23 |
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| 4. | Simplex optimization of ion-pair reversed-phase high performance liquid chromatographic analysis of some heavy metals | Srijaranai, S. Burakham, R. Deming, R.L. Khammeng, T. |
2002 |
Talanta 4 (56), pp. 655-661 |
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| 5. | Use of the simplex method to optimize the mobile phase for the micellar chromatographic separation of inorganic anions | Srijaranai, S. Burakham, R. Khammeng, T. Deming, R.L. |
2002 |
Analytical and Bioanalytical Chemistry 1 (374), pp. 145-147 |
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| 6. | Supercritical Fluid Generated Stationary Phases for Liquid Chromatography and Capillary Electrochromatography | Srijaranai, S. Fischer, G.W. |
2003 |
Analytical Chemistry 21 (75), pp. 5860-5869 |
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| 7. | Effect of bound copper(II) on the LC separation of selected phenols using an aminophosphonic acid silica stationary phase | Srijaranai, S. Siriangkhawut, W. Srijaranai, S. Ruksakulpiwat, C. Deming, R.L. |
2004 |
Analytical Letters 12 (37), pp. 2577-2594 |
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| 8. | Flow-injection in-line complexation for ion-pair reversed phase high performance liquid chromatography of some metal-4-(2-pyridylazo) resorcinol chelates | Srijaranai, S. Chanpaka, S. Kukusamude, C. |
2006 |
Talanta 5 (68), pp. 1720-1725 |
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| 9. | Capillary zone electrophoresis of organic acids in beverages | Santalad, A. Teerapornchaisit, P. Burakham, R. Srijaranai, S. |
2007 |
LWT - Food Science and Technology 10 (40), pp. 1741-1746 |
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| 10. | Field-amplified sample injection and in-capillary derivatization for capillary electrophoretic analysis of metal ions in local wines | Santalad, A. Burakham, R. Srijaranai, S. |
2007 |
Microchemical Journal 2 (86), pp. 209-215 |
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| 11. | High-performance liquid chromatography with sequential injection for online precolumn derivatization of some heavy metals | Burakham, R. Srijaranai, S. |
2007 |
Journal of Separation Science 16 (30), pp. 2614-2619 |
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| 12. | Pre-capillary derivatisation and capillary zone electrophoresis for amino acids analysis in beverages | Santalad, A. Teerapornchaisit, P. Burakham, R. Srijaranai, S. |
2007 |
Annali di Chimica 9 (97), pp. 935-945 |
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| 13. | Acid-induced cloud-point extraction coupled to spectrophotometry for the determination of carbaryl residues in waters and vegetables | Santalad, A. Srijaranai, S. Burakham, R. Sakai, T. Deming, R.L. |
2008 |
Microchemical Journal 1 (90), pp. 50-55 |
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| 14. | Cloud-point extraction and reversed-phase high-performance liquid chromatography for the determination of carbamate insecticide residues in fruits | Santalad, A. Srijaranai, S. Burakham, R. Deming, R.L. |
2009 |
Analytical and Bioanalytical Chemistry 5 (394), pp. 1307-1317 |
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| 15. | Erratum to Acid-induced cloud-point extraction coupled to spectrophotometry for the determination of carbaryl residues in waters and vegetables, [Microchem. J. (2008), 90, 50-55] | Santalad, A. Srijaranai, S. Burakham, R. Sakai, T. Deming, R.L. |
2010 |
Microchemical Journal 2 (96), pp. 423 |
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| 16. | High performance liquid chromatographic analysis of phenolic compounds and their antioxidant activities in rice varieties | Vichapong, J. Sookserm, M. Srijesdaruk, V. Swatsitang, P. Srijaranai, S. |
2010 |
LWT - Food Science and Technology 9 (43), pp. 1325-1330 |
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| 17. | Micellar electrokinetic chromatography with amperometric detection and off-line solid-phase extraction for analysis of carbamate insecticides | Santalad, A. Zhou, L. Burakham, R. Srijaranai, S. |
2010 |
Journal of Chromatography A 32 (1217), pp. 5288-5297 |
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| 18. | Mixed micelle-cloud point extraction for the analysis of penicillin residues in bovine milk by high performance liquid chromatography | Kukusamude, C. Santalad, A. Boonchiangma, S. Burakham, R. Srijaranai, S. |
2010 |
Talanta 1-2 (81), pp. 486-492 |
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| 19. | Retention and selectivity properties of carbamate pesticides on novel polar-embedded stationary phases | Santalad, A. Srijaranai, S. Yamen, H. |
2010 |
Analytical and Bioanalytical Chemistry 6 (397), pp. 2513-2524 |
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| 20. | Use of surfactant as mobile phase additive in LC for simultaneous determination of metal-pyrrolidine dithiocarbamate chelates | Butwong, N. Burakham, R. Srijaranai, S. |
2010 |
Chromatographia 7-8 (71), pp. 639-645 |
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| 21. | A simplified spectrophotometric method for the determination of inulin in Jerusalem artichoke (Helianthus tuberosus L.) tubers | Saengkanuk, A. Nuchadomrong, S. Jogloy, S.S. Patanothai, A. Srijaranai, S. |
2011 |
European Food Research and Technology 4 (233), pp. 609-616 |
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| 22. | Catanionic surfactant ambient cloud point extraction and high-performance liquid chromatography for simultaneous analysis of organophosphorus pesticide residues in water and fruit juice samples | Seebunrueng, K. Santaladchaiyakit, Y. Soisungnoen, P. Srijaranai, S. |
2011 |
Analytical and Bioanalytical Chemistry 5 (401), pp. 1707-1716 |
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| 23. | Catanionic surfactant ambient cloud point extraction and high-performance liquid chromatography for simultaneous analysis of organophosphorus pesticide residues in water and fruit juice samples. | Seebunrueng, K. Santaladchaiyakit, Y. Soisungnoen, P. Srijaranai, S. |
2011 |
Analytical and bioanalytical chemistry 5 (401), pp. 1703-1712 |
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| 24. | Chemical compositions and non-enzymatic browning compounds of thai honey: A kinetic study | Boonchiangma, S. Chanthai, S. Srijarenai, S. Srijaranai, S. |
2011 |
Journal of Food Process Engineering 5 (34), pp. 1584-1596 |
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| 25. | Determination of arsenic based on quenching of CdS quantum dots fluorescence using the gas-diffusion flow injection method | Butwong, N. Noipa, T. Burakham, R. Srijaranai, S. Ngeontae, W. |
2011 |
Talanta 2 (85), pp. 1063-1069 |
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| 26. | New approach for evaluation of the antioxidant capacity based on scavenging DPPH free radical in micelle systems | Noipa, T. Srijaranai, S. Tuntulani, T. Ngeontae, W. |
2011 |
Food Research International 3 (44), pp. 798-806 |
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| 27. | Rapid assessment of inulin content in Helianthus tuberosus L. tubers | Puangbut, D. Jogloy, S.S. Srijaranai, S. Vorasoot, N. Kesmala, T. Patanothai, A. |
2011 |
Sabrao Journal of Breeding and Genetics 2 (43), pp. 188-200 |
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| 28. | Room temperature imidazolium ionic liquid: A solvent for extraction of carbamates prior to liquid chromatographic analysis | Vichapong, J. Burakham, R. Srijaranai, S. |
2011 |
Talanta 5 (84), pp. 1253-1258 |
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| 29. | Sequential injection-bead injection-lab-on-valve coupled to high-performance liquid chromatography for online renewable micro-solid-phase extraction of carbamate residues in food and environmental samples | Vichapong, J. Burakham, R. Srijaranai, S. |
2011 |
Journal of Separation Science 13 (34), pp. 1574-1581 |
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| 30. | Use of 1-(2-pyridylazo)-2-naphthol as the post column reagent for ion exchange chromatography of heavy metals in environmental samples | Srijaranai, S. Santaladchaiyakit, Y. Khameng, T. Deming, R.L. |
2011 |
Microchemical Journal 1 (99), pp. 152-158 |
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| 31. | A simplified ultrasound-assisted cloud-point extraction method coupled with high performance liquid chromatography for residue analysis of benzimidazole anthelmintics in water and milk samples | Santaladchaiyakit, Y. Srijaranai, S. |
2012 |
Analytical Methods 11 (4), pp. 3864-3873 |
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| 32. | Comparison of micelle-mediated extraction and diazotized 2,4-dimethoxyaniline methods for the simultaneous determination of carbamate insecticides by HPLC-UV | Santaladchaiyakit, Y. Srijaranai, S. |
2012 |
Acta Chimica Slovenica 4 (59), pp. 855-862 |
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| 33. | Determination of organophosphorus pesticides using dispersive liquid-liquid microextraction combined with reversed electrode polarity stacking mode - Micellar electrokinetic chromatography | Soisungnoen, P. Burakham, R. Srijaranai, S. |
2012 |
Talanta (98), pp. 62-68 |
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| 34. | Determination of six pyrethroid insecticides in fruit juice samples using dispersive liquid-liquid microextraction combined with high performance liquid chromatography | Boonchiangma, S. Ngeontae, W. Srijaranai, S. |
2012 |
Talanta (88), pp. 209-215 |
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| 35. | Genotypic variability and genotype by environment interactions for inulin content of Jerusalem artichoke germplasm | Puttha, R. Jogloy, S.S. Wangsomnuk, P.P. Srijaranai, S. Kesmala, T. Patanothai, A. |
2012 |
Euphytica 1 (183), pp. 119-131 |
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| 36. | Green extraction using catanionic surfactants of trimethyltetradecyl ammonium bromide-sodium dodecyl sulfate for preconcentration of organophosphorus pesticides in fruit samples | Seebunrueng, K. Santaladchaiyakit, Y. Srijaranai, S. |
2012 |
Analytical Methods 6 (4), pp. 1674-1680 |
||||||||
| 37. | High performance liquid chromatography for the simultaneous analysis of penicillin residues in beef and milk using ion-paired extraction and binary water-acetonitrile mixture | Kukusamude, C. Burakham, R. Srijaranai, S. |
2012 |
Talanta (92), pp. 38-44 |
||||||||
| 38. | Influence of planting date and temperature on inulin content in Jerusalem artichoke (Helianthus tuberosus L.) | Puangbut, D. Jogloy, S.S. Vorasoot, N. Srijaranai, S. Kesmala, T. Holbrook, C.C. Patanothai, A. |
2012 |
Australian Journal of Crop Science 7 (6), pp. 1159-1165 |
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| 39. | Methodological aspects of sample preparation for the determination of carbamate residues: A review | Santaladchaiyakit, Y. Srijaranai, S. Burakham, R. |
2012 |
Journal of Separation Science 18 (35), pp. 2373-2389 |
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| 40. | Reversed Electrode Polarity Stacking Sample Preconcentration Combined with Micellar Electrokinetic Chromatography for the Analysis of Carbamate Insecticide Residues in Fruit Juices | Santalad, A. Srijaranai, S. Burakham, R. |
2012 |
Food Analytical Methods 1 (5), pp. 96-103 |
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| 41. | Role of different salts on cloud-point extraction of isoprocarb and promecarb insecticides followed by high-performance liquid chromatography | Santalad, A. Burakham, R. Srijaranai, S. Srijaranai, S. Deming, R.L. |
2012 |
Journal of Chromatographic Science 6 (50), pp. 523-530 |
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| 42. | Simultaneous determination of heavy metals in drinking waters and wines by methods: Ion pair-reversed phase high performance liquid chromatography and capillary zone electrophoresis | Pimrote, W. Santaladchaiyakit, Y. Kukusamude, C. Sakai, T. Srijaranai, S. |
2012 |
International Food Research Journal 3 (19), pp. 1079-1088 |
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| 43. | Speciation of arsenic (III) and arsenic (V) based on quenching of CdS quantum dots fluorescence using hybrid sequential injection-stopped flow injection gas-diffusion system | Butwong, N. Srijaranai, S. Ngeontae, W. Burakham, R. |
2012 |
Spectrochimica Acta - Part A: Molecular and Biomolecular Spectroscopy (97), pp. 17-23 |
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| 44. | Study on the effect of chain-length compatibility of mixed anionic-cationic surfactants on the cloud-point extraction of selected organophosphorus pesticides | Seebunrueng, K. Santaladchaiyakit, Y. Srijaranai, S. |
2012 |
Analytical and Bioanalytical Chemistry 5 (404), pp. 1539-1548 |
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| 45. | Alternative spectrophotometric method for determination of bilirubin and urobilinogen in urine samples using simultaneous injection effective mixing flow analysis | Vichapong, J. Burakham, R. Srijaranai, S. Sakai, T. |
2013 |
Analytical Methods 9 (5), pp. 2419-2426 |
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| 46. | Detection of silver(I) ion based on mixed surfactant-adsorbed CdS quantum dots | Butwong, N. Ngeontae, W. Burakham, R. Srijaranai, S. |
2013 |
Microchimica Acta 11-12 (180), pp. 1101-1107 |
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| 47. | Enhancement of sensitivity for the spectrophotometric determination of carbaryl using dispersive liquid microextraction combined with dispersive μ-solid phase extraction | Mukdasai, S. Thomas, C.L. Srijaranai, S. |
2013 |
Analytical Methods 3 (5), pp. 789-796 |
||||||||
| 48. | Modified QuEChERS and cloud-point extraction combined with visible spectrophotometric detection for carbaryl residue analysis in vegetables | Karnsa-ard, S. Santaladchaiyakit, Y. Srijaranai, S. Srijaranai, S. |
2013 |
Current Analytical Chemistry 1 (9), pp. 150-156 |
||||||||
| 49. | Preconcentration and Simultaneous Analysis of Benzimidazole Anthelmintics in Milk Samples by Ultrasound-Assisted Surfactant-Enhanced Emulsification Microextraction and High-Performance Liquid Chromatography | Santaladchaiyakit, Y. Srijaranai, S. |
2013 |
Food Analytical Methods 6 (6), pp. 1551-1560 |
||||||||
| 50. | The simultaneous analysis of sulfonylurea herbicide residues in fruit samples using ultrasound-assisted surfactant-enhanced emulsification microextraction coupled with high-performance liquid chromatography | Seebunrueng, K. Santaladchaiyakit, Y. Srijaranai, S. |
2013 |
Analytical Methods 21 (5), pp. 6009-6016 |
||||||||
| 51. | Vortex-assisted surfactant-enhanced-emulsification liquid-liquid microextraction with solidification of floating organic droplet combined with HPLC for the determination of neonicotinoid pesticides | Vichapong, J. Burakham, R. Srijaranai, S. |
2013 |
Talanta (117), pp. 221-228 |
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| 52. | A highly selective electrochemical sensor for l -tryptophan based on a screen-printed carbon electrode modified with poly-p-phenylenediamine and CdS quantum dots | Boonchiangma, S. Srijaranai, S. Tuntulani, T. Ngeontae, W. |
2014 |
Journal of Applied Polymer Science 11 (131), pp. |
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| 53. | A Highly Sensitive Hydrogen Peroxide Biosensor Based on Hemoglobin Immobilized on Cadmium Sulfide Quantum Dots/Chitosan Composite Modified Glassy Carbon Electrode | Butwong, N. Zhou, L. Moore, E.J. Srijaranai, S. |
2014 |
Electroanalysis 11 (26), pp. 2465-2473 |
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| 54. | Alternative solvent-based methyl benzoate vortex-assisted dispersive liquid-liquid microextraction for the high-performance liquid chromatographic determination of benzimidazole fungicides in environmental water samples | Santaladchaiyakit, Y. Srijaranai, S. |
2014 |
Journal of Separation Science 22 (37), pp. 3354-3361 |
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| 55. | Anionic microemulsion to solvent stacking for on-line sample concentration of cationic analytes in capillary electrophoresis | Kukusamude, C. Srijaranai, S. Quirino, J.P. |
2014 |
Electrophoresis 10 (35), pp. 1478-1483 |
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| 56. | A sensitive nonenzymatic hydrogen peroxide sensor using cadmium oxide nanoparticles/multiwall carbon nanotube modified glassy carbon electrode | Butwong, N. Zhou, L. Burakham, R. Moore, E.J. Srijaranai, S. |
2014 |
Journal of Electroanalytical Chemistry (717-718), pp. 41-46 |
||||||||
| 57. | Cloud-point extraction and reversed-phase high performance liquid chromatography for analysis of phenolic compounds and their antioxidant activity in Thai local wines | Vichapong, J. Santaladchaiyakit, Y. Burakham, R. Srijaranai, S. |
2014 |
Journal of Food Science and Technology 4 (51), pp. 664-672 |
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| 58. | Cloud point sample clean-up and capillary zone electrophoresis with field enhanced sample injection and micelle to solvent stacking for the analysis of herbicides in milk | Kukusamude, C. Srijaranai, S. Quirino, J.P. |
2014 |
Journal of Chromatography A (1351), pp. 110-114 |
||||||||
| 59. | Comparison of electrochemical property between multiwalled carbon nanotubes and porous graphitized carbon monolith modified glassy carbon electrode for the simultaneous determination of ascorbic acid and uric acid | Mukdasai, S. Moore, E.J. Nesterenko, E.P. Srijaranai, S. |
2014 |
Journal of Electroanalytical Chemistry (731), pp. 53-59 |
||||||||
| 60. | Comprehensive analysis of pharmaceutical products using simultaneous mixed-mode (ion-exchange/reversed-phase) and hydrophilic interaction liquid chromatography | Kazarian, A.A. Soisungnoen, P. Burakham, R. Srijaranai, S. |
2014 |
Journal of Separation Science 16 (37), pp. 2138-2144 |
||||||||
| 61. | In-capillary derivatization and preconcentration for CE of metal ions as their phenanthroline complexes | Boonchiangma, S. Kukusamude, C. Ngeontae, W. Srijaranai, S. |
2014 |
Chromatographia 3-4 (77), pp. 277-286 |
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| 62. | Low Toxic Organic Solvent-Based Ultrasound-Assisted Emulsification Microextraction for the Residue Analysis of Benzimidazole Anthelmintics in Egg Samples by High Performance Liquid Chromatography | Santaladchaiyakit, Y. Srijaranai, S. Burakham, R. |
2014 |
Food Analytical Methods 10 (7), pp. 1973-1981 |
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| 63. | Simultaneous Analysis of Inorganic Monovalent Anions/Cations Using Mixed-Bed Single-Column Ion Chromatography | Kazarian, A.A. Soisungnoen, P. Burakham, R. Srijaranai, S. |
2014 |
Chromatographia 3-4 (78), pp. 179-187 |
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| 64. | Stacking and separation of neutral and cationic analytes in interface-free two-dimensional heart-cutting capillary electrophoresis | Kukusamude, C. Srijaranai, S. Quirino, J.P. |
2014 |
Analytical Chemistry 6 (86), pp. 3159-3166 |
||||||||
| 65. | Surfactant-Solvent-Based Quaternary Component Emulsification Microextraction Followed by High-Performance Liquid Chromatography for the Simultaneous Analysis of Benzimidazole Anthelmintics in Milk Samples | Santaladchaiyakit, Y. Srijaranai, S. |
2014 |
Food Analytical Methods 6 (7), pp. 1238-1246 |
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| 66. | Two-step microextraction combined with high performance liquid chromatographic analysis of pyrethroids in water and vegetable samples | Mukdasai, S. Thomas, C.L. Srijaranai, S. |
2014 |
Talanta (120), pp. 289-296 |
||||||||
| 67. | Ultrasound-assisted dispersive liquid-liquid microextraction combined with high performance liquid chromatography for sensitive determination of five biogenic amines in fermented fish samples | Donthuan, J. Yunchalard, S. Srijaranai, S. |
2014 |
Analytical Methods 4 (6), pp. 1128-1134 |
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| 68. | Vortex-assisted low density solvent based demulsified dispersive liquid-liquid microextraction and high-performance liquid chromatography for the determination of organophosphorus pesticides in water samples | Seebunrueng, K. Santaladchaiyakit, Y. Srijaranai, S. |
2014 |
Chemosphere (103), pp. 51-58 |
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| 69. | Vortex-assisted surfactant-enhanced-emulsification liquid liquid microextraction of biogenic amines in fermented foods before their simultaneous analysis by high-performance liquid chromatography | Donthuan, J. Yunchalard, S. Srijaranai, S. |
2014 |
Journal of Separation Science 21 (37), pp. 3164-3173 |
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| 70. | Determination of Benzimidazole Anthelminthics in Eggs by Advanced Microextraction with High-Performance Liquid Chromatography | Vichapong, J. Santaladchaiyakit, Y. Burakham, R. Srijaranai, S. |
2015 |
Analytical Letters 4 (48), pp. 617-631 |
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| 71. | Determination of benzimidazole anthelmintics using HPLC after vortex-assisted mixed anionic-cationic surfactant-enhanced emulsification microextraction with solidification of floating organic droplet procedure | Vichapong, J. Santaladchaiyakit, Y. Burakham, R. Kanchanamayoon, W. Srijaranai, S. |
2015 |
Journal of Food Composition and Analysis (37), pp. 30-37 |
||||||||
| 72. | Electrodeposition of palladium nanoparticles on porous graphitized carbon monolith modified carbon paste electrode for simultaneous enhanced determination of ascorbic acid and uric acid | Mukdasai, S. Crowley, U.M. Nesterenko, E.P. Srijaranai, S. Moore, E.J. |
2015 |
Sensors and Actuators, B: Chemical (218), pp. 280-288 |
||||||||
| 73. | In-coupled syringe assisted octanol-water partition microextraction coupled with high-performance liquid chromatography for simultaneous determination of neonicotinoid insecticide residues in honey | Vichapong, J. Burakham, R. Srijaranai, S. |
2015 |
Talanta (139), pp. 21-26 |
||||||||
| 74. | Ion Chromatographic Analysis of Monosaccharides and Disaccharides in Raw Sugar | Suksom, W. Wannachai, W. Boonchiangma, S. Chanthai, S. Srijaranai, S. |
2015 |
Chromatographia (), pp. |
||||||||
| 75. | Ion chromatographic analysis of monosaccharides and disaccharides in raw sugar | Suksom, W. Wannachai, W. Boonchiangma, S. Chanthai, S. Srijaranai, S. |
2015 |
Chromatographia 13 (78), pp. 873-879 |
||||||||
| 76. | Ionic Liquid-Based Vortex-Assisted Liquid–Liquid Microextraction for Simultaneous Determination of Neonicotinoid Insecticides in Fruit Juice Samples | Vichapong, J. Burakham, R. Srijaranai, S. |
2015 |
Food Analytical Methods (), pp. |
||||||||
| 77. | New eco-friendly extraction of anionic analytes based on formation of layered double hydroxides | Sansuk, S. Nanan, S. Srijaranai, S. |
2015 |
Green Chemistry 7 (17), pp. 3837-3843 |
||||||||
| 78. | Preparation of Inulin Powder from Jerusalem Artichoke (Helianthus tuberosus L.) Tuber | Srinameb, B.O. Nuchadomrong, S. Jogloy, S.S. Patanothai, A. Srijaranai, S. |
2015 |
Plant Foods for Human Nutrition (), pp. |
||||||||
| 79. | Preparation of Inulin Powder from Jerusalem Artichoke (Helianthus tuberosus L.) Tuber | Srinameb, B.O. Nuchadomrong, S. Jogloy, S.S. Patanothai, A. Srijaranai, S. |
2015 |
Plant Foods for Human Nutrition 2 (70), pp. 221-226 |
||||||||
| 80. | Reversed Phase Chromatographic Analysis of 13 Amino Acids in Honey Samples | Boonchiangma, S. Ratchakrut, P. Chanthai, S. Srijaranai, S. |
2015 |
Chromatographia (), pp. |
||||||||
| 81. | Reversed phase chromatographic analysis of 13 amino acids in honey samples | Boonchiangma, S. Ratchakrut, P. Chanthai, S. Srijaranai, S. |
2015 |
Chromatographia 13 (78), pp. 923-927 |
||||||||
| 82. | Variation of inulin content, inulin yield and water use efficiency for inulin yield in Jerusalem artichoke genotypes under different water regimes | Puangbut, D. Jogloy, S.S. Vorasoot, N. Srijaranai, S. Holbrook, C.C. Patanothai, A. |
2015 |
Agricultural Water Management (152), pp. 142-150 |
||||||||
| 83. | Vortex-assisted low density solvent liquid-liquid microextraction and salt-induced demulsification coupled to high performance liquid chromatography for the determination of five organophosphorus pesticide residues in fruits | Seebunrueng, K. Santaladchaiyakit, Y. Srijaranai, S. |
2015 |
Talanta (132), pp. 769-774 |
||||||||
| 84. | A coacervative extraction based on single-chain and double-chain cationic surfactants | Kukusamude, C. Quirino, J.P. Srijaranai, S. |
2016 |
Journal of Chromatography A (1472), pp. 10-15 |
||||||||
| 85. | Alternative Liquid–Liquid Microextraction as Cleanup for Determination of Neonicotinoid Pesticides Prior HPLC Analysis | Vichapong, J. Burakham, R. Srijaranai, S. |
2016 |
Chromatographia 5-6 (79), pp. 285-291 |
||||||||
| 86. | A New Approach for Removing Anionic Organic Dyes from Wastewater Based on Electrostatically Driven Assembly | Sansuk, S. Srijaranai, S. Srijaranai, S. |
2016 |
Environmental Science and Technology 12 (50), pp. 6477-6484 |
||||||||
| 87. | A preconcentration method for analysis of neonicotinoids in honey samples by ionic liquid-based cold-induced aggregation microextraction | Vichapong, J. Burakham, R. Santaladchaiyakit, Y. Srijaranai, S. |
2016 |
Talanta (155), pp. 216-221 |
||||||||
| 88. | A sensitive and selective spectrophotometric method for 2-chlorophenol based on solid phase extraction with mixed hemimicelle magnetic nanoparticles | Mukdasai, S. Butwong, N. Thomas, C.L. Srijaranai, S. Srijaranai, S. |
2016 |
Arabian Journal of Chemistry 3 (9), pp. 463-470 |
||||||||
| 89. | Determination of β-agonists in Porcine Meats by Ion-Pair Extraction and High Performance Liquid Chromatography | Vichapong, J. Burakham, R. Srijaranai, S. |
2016 |
Analytical Letters 2 (49), pp. 208-216 |
||||||||
| 90. | Ionic liquid-based vortex-assisted liquid–liquid microextraction for simultaneous determination of neonicotinoid insecticides in fruit juice samples | Vichapong, J. Burakham, R. Srijaranai, S. |
2016 |
Food Analytical Methods 2 (9), pp. 419-426 |
||||||||
| 91. | Preconcentration and Simultaneous Determination of Heterocyclic Aromatic Amines in Grilled Pork Samples by Ion-Pair-Based Surfactant-Assisted Dispersive Liquid-Liquid Microextraction and High-Performance Liquid Chromatography | Vichapong, J. Srijaranai, S. Santaladchaiyakit, Y. Kanchanamayoon, W. Burakham, R. |
2016 |
Food Analytical Methods 5 (9), pp. 1120-1127 |
||||||||
| 92. | Air-Agitated Cloud-Point Extraction Coupled with High-Performance Liquid Chromatography for Determination of Heterocyclic Aromatic Amines in Smoked Sausages | Vichapong, J. Burakham, R. Srijaranai, S. |
2017 |
Food Analytical Methods 6 (10), pp. 1645-1652 |
||||||||
| 93. | Cationic micellar precipitation for simultaneous preconcentration of benzimidazole anthelmintics in milk samples by high-performance liquid chromatography | Vichapong, J. Santaladchaiyakit, Y. Srijaranai, S. Burakham, R. |
2017 |
Journal of the Brazilian Chemical Society 5 (28), pp. 724-730 |
||||||||
| 94. | Development of supramolecular solvent based microextraction prior to high performance liquid chromatography for simultaneous determination of phenols in environmental water | Seebunrueng, K. Santaladchaiyakit, Y. Srijaranai, S. |
2017 |
RSC Advances 79 (7), pp. 50143-50149 |
||||||||
| 95. | Ionic liquid-assisted liquid–liquid microextraction based on the solidification of floating organic droplet in sample preparation for simultaneous determination of herbicide residues in fruits | Vichapong, J. Santaladchaiyakit, Y. Burakham, R. Srijaranai, S. |
2017 |
Acta Chimica Slovenica 3 (64), pp. 590-597 |
||||||||
| 96. | Methyl salicylate-based vortex-assisted surfactant-enhanced emulsification microextraction and HPLC for determination of fungicides in honey samples | Santaladchaiyakit, Y. Srijaranai, S. |
2017 |
Acta Chimica Slovenica 4 (64), pp. 849-857 |
||||||||
| 97. | New approach for detection of chromate ion by preconcentration with mixed metal hydroxide coupled with fluorescence sensing of copper nanoclusters | Sansuk, S. Srijaranai, S. Tuntulani, T. Saiyasombat, C. Ngeontae, W. |
2017 |
Microchimica Acta 8 (184), pp. 2965-2974 |
||||||||
| 98. | The alternative use of layered double hydroxides as extraction medium coupled with microcomplexation for determination of phosphate in water samples | Sansuk, S. Srijaranai, S. |
2017 |
Spectrochimica Acta - Part A: Molecular and Biomolecular Spectroscopy (173), pp. 994-1000 |
||||||||
| 99. | The use of dissolvable layered double hydroxide components in an in situ solid-phase extraction for chromatographic determination of tetracyclines in water and milk samples | Sansuk, S. Santaladchaiyakit, Y. Srijaranai, S. |
2017 |
Journal of Chromatography A (1519), pp. 38-44 |
||||||||
| 100. | A highly sensitive electrochemical determination of L-tryptophan in the presence of ascorbic acid and uric acid using in situ addition of tetrabutylammonium bromide on the ß-cyclodextrin incorporated multi-walled carbon nanotubes modified electrode | Mukdasai, S. Ngeontae, W. Srijaranai, S. |
2018 |
Sensors and Actuators, B: Chemical (272), pp. 518-525 |
||||||||
| 101. | A simple dispersive-micro-solid phase extraction based on a colloidal silica sorbent for the spectrophotometric determination of Fe(II) in the presence of tetrabutylammonium bromide | Mukdasai, S. Poonsawat, C. Srijaranai, S. |
2018 |
New Journal of Chemistry 5 (42), pp. 3401-3408 |
||||||||
| 102. | A simple solvent based microextraction for high performance liquid chromatographic analysis of aflatoxins in rice samples | Seebunrueng, K. Boonchiangma, S. Srijaranai, S. |
2018 |
Talanta (176), pp. 172-177 |
||||||||
| 103. | Cysteamine Capped Silver Nanoparticles and Single-walled Carbon Nanotubes Composite Coated on Glassy Carbon Electrode for Simultaneous Analysis of Hydroquinone and Catechol | Butwong, N. Srijaranai, S. |
2018 |
Electroanalysis 5 (30), pp. 962-968 |
||||||||
| 104. | Preconcentration of trace neonicotinoid insecticide residues using vortex-assisted dispersive micro solid-phase extraction with montmorillonite as an efficient sorbent | Santaladchaiyakit, Y. Srijaranai, S. Vichapong, J. |
2018 |
Molecules 4 (23), pp. |
||||||||
| 105. | Silver-doped CdS quantum dots incorporated into chitosan-coated cellulose as a colorimetric paper test stripe for mercury | Butwong, N. Soisungnoen, P. Chotichayapong, C. Srijaranai, S. |
2018 |
Microchimica Acta 2 (185), pp. |
||||||||
| 106. | Ultrasonically modified amended-cloud point extraction for simultaneous pre-concentration of neonicotinoid insecticide residues | Vichapong, J. Burakham, R. Santaladchaiyakit, Y. Srijaranai, S. |
2018 |
Molecules 5 (23), pp. |
||||||||
| 107. | Vortex-assisted low density solvent and surfactant based dispersive liquid-liquid microextraction for sensitive spectrophotometric determination of cobalt | Seebunrueng, K. Srijaranai, S. |
2018 |
RSC Advances 13 (8), pp. 7243-7251 |
||||||||
| 108. | A novel colorimetric paper sensor based on the layer-by-layer assembled multilayers of surfactants for the sensitive and selective determination of total antioxidant capacity | Mukdasai, S. Uppachai, P. Srijaranai, S. |
2019 |
RSC Advances 49 (9), pp. 28598-28608 |
||||||||
| 109. | A simple capture-release strategy based on an instantly formed mixed metal hydroxide sorbent for determination of salicylic acid in cosmetics | Srijaranai, S. Sansuk, S. |
2019 |
Sustainable Chemistry and Pharmacy (13), pp. |
||||||||
| 110. | Β-Cyclodextrin assisted liquid–liquid microextraction based on solidification of the floating organic droplets method for determination of neonicotinoid residues | Vichapong, J. Burakham, R. Santaladchaiyakit, Y. Srijaranai, S. |
2019 |
Molecules 21 (24), pp. |
||||||||
| 111. | Magnetic stirring assisted demulsification dispersive liquid-liquid microextraction for preconcentration of polycyclic aromatic hydrocarbons in grilled pork samples | Vichapong, J. Santaladchaiyakit, Y. Burakham, R. Srijaranai, S. |
2019 |
Toxics 1 (7), pp. |
||||||||
| 112. | Modified Vortex-assisted Surfactant-enhanced Emulsification Microextraction using Methyl Benzoate for the Preconcentration of Fungicides in Fruit Juice Samples and Determination by High-performance Liquid Chromatography | Srijaranai, S. | 2019 |
Journal of Analytical Chemistry 10 (74), pp. 1027-1034 |
||||||||
| 113. | Rapid removal and efficient recovery of tetracycline antibiotics in aqueous solution using layered double hydroxide components in an in situ-adsorption process | Srijaranai, S. Sansuk, S. |
2019 |
Crystals 7 (9), pp. |
||||||||
| 114. | Supramolecular solvent-based liquid phase microextraction combined with ion-pairing reversed-phase HPLC for the determination of quats in vegetable samples | Srijaranai, S. Boonchiangma, S. |
2019 |
Toxics 4 (7), pp. |
||||||||
| 115. | Vesicular supramolecular solvent-based microextraction followed by high performance liquid chromatographic analysis of tetracyclines | Boonchiangma, S. Mukdasai, S. Srijaranai, S. |
2019 |
Talanta (200), pp. 203-211 |
||||||||
| 116. | An Alternative Spectrophotometric Determination of Carbaryl Insecticide Residues in Water Samples Using the Cerium-Catalyzed Belousov-Zhabotinsky Oscillating Reaction | Santaladchaiyakit, Y. Sansuk, S. Srijaranai, S. |
2020 |
Journal of the Brazilian Chemical Society 5 (31), pp. 963-970 |
||||||||
| 117. | An eco-friendly hydrophobic deep eutectic solvent-based dispersive liquid-liquid microextraction for the determination of neonicotinoid insecticide residues in water, soil and egg yolk samples | Vichapong, J. Santaladchaiyakit, Y. Burakham, R. Srijaranai, S. |
2020 |
Molecules 12 (25), pp. |
||||||||
| 118. | A new environment-friendly supramolecular solvent-based liquid phase microextraction coupled to high performance liquid chromatography for simultaneous determination of six phenoxy acid herbicides in water and rice samples | Seebunrueng, K. Srijaranai, S. |
2020 |
Microchemical Journal (152), pp. |
||||||||
| 119. | A rapid and simple method for the removal of dyes and organophosphorus pesticides from water and soil samples using deep eutectic solvent embedded sponge | Mukdasai, S. Boonchiangma, S. Sansuk, S. Srijaranai, S. |
2020 |
Chemosphere (260), pp. |
||||||||
| 120. | A simple in syringe low density solvent-dispersive liquid liquid microextraction for enrichment of some metal ions prior to their determination by high performance liquid chromatography in food samples | Mukdasai, S. Srijaranai, S. |
2020 |
Molecules 3 (25), pp. |
||||||||
| 121. | Cloud-point extraction coupled to in-situ metathesis reaction of deep eutectic solvents for preconcentration and liquid chromatographic analysis of neonicotinoid insecticide residues in water, soil and urine samples | Vichapong, J. Santaladchaiyakit, Y. Srijaranai, S. |
2020 |
Microchemical Journal (152), pp. |
||||||||
| 122. | Dissolvable Mg/Al layered double hydroxides and surfactant as an extractant for trace analysis of benzoylurea insecticides by high performance liquid chromatography | Santaladchaiyakit, Y. Srijaranai, S. |
2020 |
Analytical Methods 44 (12), pp. 5380-5391 |
||||||||
| 123. | Erratum to: Modified Vortex-Assisted Surfactant-Enhanced Emulsification Microextraction Using Methyl Benzoate for the Preconcentration of Fungicides in Fruit Juice Samples and Analysis by High-Performance Liquid Chromatography (Journal of Analytical Chemistry, (2019), 74, 10, (1027-1034), 10.1134/S1061934819100095) | Srijaranai, S. | 2020 |
Journal of Analytical Chemistry 7 (75), pp. 965 |
||||||||
| 124. | Mixed micelle-mediated cloud point extraction coupled to spectrophotometry for fast screening of salbutamol in wastewater, pig feed and pork samples | Vichapong, J. Santaladchaiyakit, Y. Burakham, R. Srijaranai, S. |
2020 |
Chiang Mai Journal of Science 3 (47), pp. 542-553 |
||||||||
| 125. | Supramolecular electrochemical sensor for dopamine detection based on self-assembled mixed surfactants on gold nanoparticles deposited graphene oxide | Uppachai, P. Srijaranai, S. Mukdasai, S. |
2020 |
Molecules 11 (25), pp. |
||||||||
| 126. | An electrochemical sensor for voltammetric detection of ciprofloxacin using a glassy carbon electrode modified with activated carbon, gold nanoparticles and supramolecular solvent | Gissawong, N. Srijaranai, S. Boonchiangma, S. Uppachai, P. Seehamart, K. Jantrasee, S. Moore, E.J. Mukdasai, S. |
2021 |
Microchimica Acta 6 (188), pp. |
||||||||
| 127. | A novel liquid colorimetric probe for highly selective and sensitive detection of lead (II) | Laosuwan, M. Poonsawat, C. Burakham, R. Srijaranai, S. Mukdasai, S. |
2021 |
Food Chemistry (363), pp. |
||||||||
| 128. | A simple and sensitive colorimetric sensor for cadmium (II) detection based on self-assembled trimethyl tetradecyl ammonium bromide and murexide on colloidal silica | Mukdasai, K. Santaladchaiyakit, Y. Srijaranai, S. Mukdasai, S. |
2021 |
Microchemical Journal (160), pp. |
||||||||
| 129. | Co-precipitation based on layered double hydroxides and anionic surfactants for preconcentration of six benzoylurea insecticides in soft drinks before simultaneous analysis by high-performance liquid chromatography | Santaladchaiyakit, Y. Gissawong, N. Srijaranai, S. |
2021 |
Analytical Methods 47 (13), pp. 5735-5748 |
||||||||
| 130. | In situ self-assembled coating of surfactant-mixed metal hydroxide on Fe<inf>3</inf>O<inf>4</inf>@SiO<inf>2</inf> magnetic composite for dispersive solid phase microextraction prior to HPLC analysis of triazole fungicides | Seebunrueng, K. Ruangchai, S. Sansuk, S. Srijaranai, S. |
2021 |
Microchemical Journal (168), pp. |
||||||||
| 131. | Surface Plasmon Resonance Sensor for Novel Detection of Histidine Based on the Hg2+ Induced Aggregation of AuNPs Followed by Preconcentration with Chitosan Gel as Solid Phase Biosorbent | Uppa, Y. Srijaranai, S. Chanthai, S. |
2021 |
Analytical Sciences 12 (37), pp. 1741-1748 |
||||||||
| 132. | A facile nonenzymatic electrochemical sensor based on copper oxide nanoparticles deposited on activated carbon for the highly sensitive detection of methyl parathion | Uppachai, P. Butwong, N. Jantrasee, S. Loiha, S. Srijaranai, S. Mukdasai, S. |
2022 |
Journal of Applied Electrochemistry 3 (52), pp. 595-606 |
||||||||
| 133. | An In Situ Formation of Ionic Liquid for Enrichment of Triazole Fungicides in Food Applications Followed by HPLC Determination | Kachangoon, R. Vichapong, J. Santaladchaiyakit, Y. Srijaranai, S. |
2022 |
Molecules 11 (27), pp. |
||||||||
| 134. | A Simple Dispersive Micro-Solid Phase Extraction for Determination of Neonicotinoid Insecticides in Surface Water and Fruit Juice Samples | Vichapong, J. Santaladchaiyakit, Y. Burakham, R. Srijaranai, S. |
2022 |
Chiang Mai Journal of Science 2 (49), pp. 387-397 |
||||||||
| 135. | Electrochemical detection of methyl parathion using calix[6]arene/bismuth ferrite/multiwall carbon nanotube-modified fluorine-doped tin oxide electrode | Gissawong, N. Srijaranai, S. Nanan, S. Mukdasai, K. Uppachai, P. Teshima, N. Mukdasai, S. |
2022 |
Microchimica Acta 12 (189), pp. |
||||||||
| 136. | Facile liquid colorimetric sensor using high-density deep eutectic solvent for trace detection and speciation of iron in milk | Laosuwan, M. Gissawong, N. Butwong, N. Srijaranai, S. Mukdasai, S. |
2022 |
Spectrochimica Acta - Part A: Molecular and Biomolecular Spectroscopy (272), pp. |
||||||||
| 137. | Green fabrication of Moringa oleifera seed as efficient biosorbent for selective enrichment of triazole fungicides in environmental water, honey and fruit juice samples | Vichapong, J. Santaladchaiyakit, Y. Srijaranai, S. |
2022 |
Microchemical Journal (175), pp. |
||||||||
| 138. | In-situ formation of modified nickel–zinc-layered double hydroxide followed by HPLC determination of neonicotinoid insecticide residues | Vichapong, J. Burakham, R. Santaladchaiyakit, Y. Srijaranai, S. |
2022 |
Molecules 1 (27), pp. |
||||||||
| 139. | Modified Peanut Shell as an Eco-Friendly Biosorbent for Effective Extraction of Triazole Fungicide Residues in Surface Water and Honey Samples before Their Determination by High-Performance Liquid Chromatography | Khiaophong, W. Jaroensan, J. Kachangoon, R. |
2022 |
ACS Omega 39 (7), pp. 34877-34887 |
||||||||
| 140. | Preconcentration of triazole fungicides using effervescent assisted switchable hydrophilicity solvent-based microextraction prior to high-performance liquid chromatographic analysis | Palasak, J. Buppasang, R. Kachangoon, R. |
2022 |
Microchemical Journal (182), pp. |
||||||||
| 141. | Ringer Tablet-Based Micelle-Mediated Extraction-Solvent Back Extraction Coupled with High-Performance Liquid Chromatography for Preconcentration and Determination of Neonicotinoid Pesticides | Vichapong, J. Burakham, R. Santaladchaiyakit, Y. Srijaranai, S. |
2022 |
Food Analytical Methods 4 (15), pp. 970-980 |
||||||||
| 142. | Simultaneous Preconcentration of Triazole Fungicide Residues Using In-Situ Coacervative Extraction Based on a Double-Solvent Supramolecular System Prior to High Performance Liquid Chromatographic Analysis | Buppasang, R. Palasak, J. Kachangoon, R. |
2022 |
Molecules 19 (27), pp. |
||||||||
| 143. | Ethyl salicylate and ethyl benzoate for vortex-assisted surfactant-enhanced emulsification microextraction of fungicides in water samples and analysis by high-performance liquid chromatography | Santaladchaiyakit, Y. Srijaranai, S. |
2023 |
International Journal of Environmental Analytical Chemistry 20 (103), pp. 8765-8781 |
||||||||
| 144. | Sample Preparation Approach by In Situ Formation of Supramolecular Solvent Microextraction for Enrichment of Neonicotinoid Insecticide Residues | Kachangoon, R. Vichapong, J. Santaladchaiyakit, Y. Burakham, R. Srijaranai, S. |
2023 |
Food Analytical Methods 2 (16), pp. 330-339 |
||||||||
| 145. | A novel electrochemical sensor based on ꞵ-cyclodextrin/bismuth oxybromide/multi-walled carbon nanotubes modified electrode with in situ addition of tetrabutylammonium bromide for the simultaneous detection and degradation of tebuconazole | Wannasri, N. Uppachai, P. Senasu, T. Nanan, S. Katrun, P. Vichapong, J. Butwong, N. Srijaranai, S. Mukdasai, S. |
2024 |
Microchimica Acta 11 (191), pp. |
||||||||
| 146. | Biological Monitoring of Glyphosate Exposure among Knapsack Sprayers in Khon Kaen, Thailand | Chaiklieng, S. Uengchuen, K. Gissawong, N. Srijaranai, S. Autrup, H. |
2024 |
Toxics 5 (12), pp. |
||||||||
| 147. | A simple colorimetric sensor based on a new deep eutectic solvent for the detection of chromium | Seesuan, T. Butwong, N. Srijaranai, S. Mukdasai, S. |
2025 |
Rsc Advances 28 (15), pp. 22641-22648 |
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| Title | Authors | Year | Journal title |
|---|
| Title | Authors | Year | Journal title | Cited count | ||||||||
|---|---|---|---|---|---|---|---|---|---|---|---|---|
| < 2020 | 2021 | 2022 | 2023 | 2024 | 2025 | รวม | ||||||
| 1. | Simplex optimization of ion-pair reversed-phase high performance liquid chromatographic analysis of some heavy metals | S Srijaranai R Burakham RL Deming T Khammeng |
2002 |
TALANTA 4.0 (56.0), pp. 655.0-661.0 |
22 | 0 | 0 | 0 | 0 | 0 | 22 | |
| 2. | Use of the simplex method to optimize the mobile phase for the micellar chromatographic separation of inorganic anions | S Srijaranai R Burakham T Khammeng RL Deming |
2002 |
ANALYTICAL AND BIOANALYTICAL CHEMISTRY 1.0 (374.0), pp. 145.0-147.0 |
4 | 0 | 0 | 0 | 0 | 0 | 4 | |
| 3. | Supercritical fluid generated stationary phases for liquid chromatography and capillary electrochromatography | LO Healy VP Owens T O'Mahony S Srijaranai JD Holmes JD Glennon G Fischer K Albert |
2003 |
ANALYTICAL CHEMISTRY 21.0 (75.0), pp. 5860.0-5869.0 |
13 | 0 | 0 | 0 | 0 | 0 | 13 | |
| 4. | Effect of bound copper(H) on the LC separation of selected phenols using an aminophosphonic acid silica stationary phase | W Siriangkhawut S Srijaranai C Ruksakulpiwat RL Deming |
2004 |
ANALYTICAL LETTERS 12.0 (37.0), pp. 2577.0-2594.0 |
2 | 0 | 0 | 0 | 0 | 0 | 2 | |
| 5. | Flow-injection in-line complexation for ion-pair reversed phase high performance liquid chromatography of some metal-4-(2-pyridylazo) resorcinol chelates | S Srijaranai S Chanpaka C Kukusamude K Grudpan |
2006 |
TALANTA 5.0 (68.0), pp. 1720.0-1725.0 |
15 | 0 | 0 | 0 | 0 | 0 | 15 | |
| 6. | A simple dispersive-micro-solid phase extraction based on a colloidal silica sorbent for the spectrophotometric determination of Fe(II) in the presence of tetrabutylammonium bromide | S. Metarwiwinit S. Mukdasai C. Poonsawat S. Srijaranai |
2018 |
NEW JOURNAL OF CHEMISTRY 5.0 (42.0), pp. 3401.0-3408.0 |
8 | 0 | 0 | 0 | 0 | 0 | 8 | |
| Title | Authors | Year | Journal title |
|---|
| ชื่อโครงการ | Authors | ประเภทโครงการ | ปีงบประมาณ | ทุนวิจับ |
|---|