
| Title | Author | Year | SCOPUS | PUBMED | ISI | TCI | |
|---|---|---|---|---|---|---|---|
| 1. | Enhancement of sensitivity of glucose sensors from alizarin-boronic acid adducts in aqueous micelles | Ngamdee, K. Noipa, T. Martwiset, S. Tuntulani, T. Ngeontae, W. |
2011 | ||||
| 2. | Selective fluorescence sensors for p-phenylenediamine using formyl boronate ester with an assistance of micelles | Ngamdee, K. Martwiset, S. Tuntulani, T. Ngeontae, W. |
2012 | ||||
| 3. | Cysteamine CdS quantum dots decorated with Fe3+ as a fluorescence sensor for the detection of PPi | Noipa, T. Ngamdee, K. Tuntulani, T. Ngeontae, W. |
2014 | ||||
| 4. | Circular dichroism sensor based on cadmium sulfide quantum dots for chiral identification and detection of penicillamine | Ngamdee, K. Tuntulani, T. Ngeontae, W. |
2015 | ||||
| 5. | L-Cysteine modified luminescence nanomaterials as fluorescence sensor for Co2+: Effects of core nanomaterials in detection selectivity | Ngamdee, K. Tuntulani, T. Ngeontae, W. |
2015 | ||||
| 6. | Silver ion modulated CdS quantum dots for highly selective detection of trace Hg2+ | Uppa, Y. Kulchat, S. Ngamdee, K. Tuntulani, T. Ngeontae, W. |
2016 | ||||
| 7. | Fluorescence sensor based on D-penicillamine capped cadmium sulfide quantum dots for the detection of cysteamine | Ngamdee, K. Kulchat, S. Tuntulani, T. Ngeontae, W. |
2017 | ||||
| 8. | Circular dichroism glucose biosensor based on chiral cadmium sulfide quantum dots | Ngamdee, K. Ngeontae, W. |
2018 | ||||
| 9. | Fluorescence chemodosimeter for dopamine based on the inner filter effect of the in situ generation of silver nanoparticles and fluorescent dye | Uppa, Y. Ngamdee, K. Promarak, V. Ngeontae, W. |
2018 | ||||
| 10. | Highly selective circular dichroism sensor based on D-penicillamine/cysteamine‑cadmium sulfide quantum dots for copper (II) ion detection | Ngamdee, K. Chaiendoo, K. Saiyasombat, C. Promarak, V. Ngeontae, W. |
2019 | ||||
| 11. | A simple strategy to enhance the sensitivity of fluorescent sensor-based CdS quantum dots by using a surfactant for Hg2+detection | Sianglam, P. Ngamdee, K. Promarak, V. Ngeontae, W. |
2021 | ||||
| 12. | Gold nanoparticle-based cascade reaction-triggered fluorogenicity for highly selective nitrite ion detection in forensic samples | Chaiendoo, K. Ngamdee, K. Saiyasombat, C. Promarak, V. Ngeontae, W. |
2021 | ||||
| 13. | A highly selective fluorescent sensor for manganese(II) ion detection based on N,S-doped carbon dots triggered by manganese oxide | Ngeontae, W. Chaiendoo, K. Ngamdee, K. Ruangchai, S. Saiyasombat, C. Promarak, V. |
2022 | ||||
| 14. | An effective strategy for the detection of tetracycline by N,S-doped carbon nanodots after preconcentration with a hybrid functional nanocomposite | Sianglam, P. | 2022 | ||||
| 15. | Simultaneous preconcentration and fluorescence detection of ATP by a hybrid nanocomposite of magnetic nanoparticles incorporated in mixed metal hydroxide | Sianglam, P. Ngamdee, K. Ngeontae, W. |
2022 | ||||
| 16. | A portable fluorescence detection device based on a smartphone employing carbon nanodots for Mn2+ sensing | Mool-Am-kha, P. Phetduang, S. Ngamdee, K. Surawanitkun, C. Ren, X.K. |
2024 | Count | 16 | 0 | 0 | 0 |
| Title | Authors | Year | Publication name | Cited count | ||||||||
|---|---|---|---|---|---|---|---|---|---|---|---|---|
| < 2020 | 2021 | 2022 | 2023 | 2024 | 2025 | Total | ||||||
| 1. | Enhancement of sensitivity of glucose sensors from alizarin-boronic acid adducts in aqueous micelles | Ngamdee, K. Noipa, T. Martwiset, S. Tuntulani, T. Ngeontae, W. |
2011 |
Sensors and Actuators, B: Chemical 1 (160), pp. 129-138 |
||||||||
| 2. | Selective fluorescence sensors for p-phenylenediamine using formyl boronate ester with an assistance of micelles | Ngamdee, K. Martwiset, S. Tuntulani, T. Ngeontae, W. |
2012 |
Sensors and Actuators, B: Chemical (173), pp. 682-691 |
||||||||
| 3. | Cysteamine CdS quantum dots decorated with Fe3+ as a fluorescence sensor for the detection of PPi | Noipa, T. Ngamdee, K. Tuntulani, T. Ngeontae, W. |
2014 |
Spectrochimica Acta - Part A: Molecular and Biomolecular Spectroscopy (118), pp. 17-23 |
||||||||
| 4. | Circular dichroism sensor based on cadmium sulfide quantum dots for chiral identification and detection of penicillamine | Ngamdee, K. Tuntulani, T. Ngeontae, W. |
2015 |
Analytica Chimica Acta (898), pp. 93-100 |
||||||||
| 5. | L-Cysteine modified luminescence nanomaterials as fluorescence sensor for Co<sup>2+</sup>: Effects of core nanomaterials in detection selectivity | Ngamdee, K. Tuntulani, T. Ngeontae, W. |
2015 |
Sensors and Actuators, B: Chemical (216), pp. 150-158 |
||||||||
| 6. | Silver ion modulated CdS quantum dots for highly selective detection of trace Hg<sup>2+</sup> | Uppa, Y. Kulchat, S. Ngamdee, K. Tuntulani, T. Ngeontae, W. |
2016 |
Journal of Luminescence (178), pp. 437-445 |
||||||||
| 7. | Fluorescence sensor based on D-penicillamine capped cadmium sulfide quantum dots for the detection of cysteamine | Ngamdee, K. Kulchat, S. Tuntulani, T. Ngeontae, W. |
2017 |
Journal of Luminescence (187), pp. 260-268 |
||||||||
| 8. | Circular dichroism glucose biosensor based on chiral cadmium sulfide quantum dots | Ngamdee, K. Ngeontae, W. |
2018 |
Sensors and Actuators, B: Chemical (274), pp. 402-411 |
||||||||
| 9. | Fluorescence chemodosimeter for dopamine based on the inner filter effect of the in situ generation of silver nanoparticles and fluorescent dye | Uppa, Y. Ngamdee, K. Promarak, V. Ngeontae, W. |
2018 |
Spectrochimica Acta - Part A: Molecular and Biomolecular Spectroscopy (200), pp. 313-321 |
||||||||
| 10. | Highly selective circular dichroism sensor based on D-penicillamine/cysteamine‑cadmium sulfide quantum dots for copper (II) ion detection | Ngamdee, K. Chaiendoo, K. Saiyasombat, C. Promarak, V. Ngeontae, W. |
2019 |
Spectrochimica Acta - Part A: Molecular and Biomolecular Spectroscopy (211), pp. 313-321 |
||||||||
| 11. | A simple strategy to enhance the sensitivity of fluorescent sensor-based CdS quantum dots by using a surfactant for Hg<sup>2+</sup>detection | Sianglam, P. Ngamdee, K. Promarak, V. Ngeontae, W. |
2021 |
Analytical Methods 36 (13), pp. 4069-4078 |
||||||||
| 12. | Gold nanoparticle-based cascade reaction-triggered fluorogenicity for highly selective nitrite ion detection in forensic samples | Chaiendoo, K. Ngamdee, K. Saiyasombat, C. Promarak, V. Ngeontae, W. |
2021 |
Microchemical Journal (168), pp. |
||||||||
| 13. | A highly selective fluorescent sensor for manganese(II) ion detection based on N,S-doped carbon dots triggered by manganese oxide | Ngeontae, W. Chaiendoo, K. Ngamdee, K. Ruangchai, S. Saiyasombat, C. Promarak, V. |
2022 |
Dyes and Pigments (203), pp. |
||||||||
| 14. | An effective strategy for the detection of tetracycline by N,S-doped carbon nanodots after preconcentration with a hybrid functional nanocomposite | Sianglam, P. | 2022 |
Microchemical Journal (183), pp. |
||||||||
| 15. | Simultaneous preconcentration and fluorescence detection of ATP by a hybrid nanocomposite of magnetic nanoparticles incorporated in mixed metal hydroxide | Sianglam, P. Ngamdee, K. Ngeontae, W. |
2022 |
Analytical Methods 2 (14), pp. 188-198 |
||||||||
| 16. | A portable fluorescence detection device based on a smartphone employing carbon nanodots for Mn<sup>2+</sup> sensing | Mool-Am-kha, P. Phetduang, S. Ngamdee, K. Surawanitkun, C. Ren, X.K. |
2024 |
Analytical Methods 14 (16), pp. 2101-2110 |
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| Title | Authors | Year | Journal title |
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| Title | Authors | Year | Journal title | Cited count | ||||||||
|---|---|---|---|---|---|---|---|---|---|---|---|---|
| < 2020 | 2021 | 2022 | 2023 | 2024 | 2025 | Total | ||||||
| Title | Authors | Year | Journal title |
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| Title | Authors | NRIIS type | Year | NRIIS Scholarship |
|---|