
| Title | Author | Year | SCOPUS | PUBMED | ISI | TCI | |
|---|---|---|---|---|---|---|---|
| 1. | Engineering Bacterial Cellulose Films by Nanocomposite Approach and Surface Modification for Biocompatible Triboelectric Nanogenerator | Supanan Jakmuangpak Teerayut Prada Wiyada Mongkolthanaruk Viyada Harnchana Supree Pinitsoontorn |
2020 | ||||
| 2. | Enhancement of output power density in a modified polytetrafluoroethylene surface using a sequential O-2/Ar plasma etching for triboelectric nanogenerator applications | Teerayut Prada Viyada Harnchana Anthika Lakhonchai Artit Chingsungnoen Phitsanu Poolcharuansin Narong Chanlek Annop Klamchuen Prasit Thongbai Vittaya Amornkitbamrung |
2022 | ||||
| 3. | Enhancement of output power density in a modified polytetrafluoroethylene surface using a sequential O |
Harnchana, V. Chingsungnoen, A. Thongbai, P. Amornkitbamrung, V. |
2022 | ||||
| 4. | Facile Synthesis of Biobased Polyamide Derived from Epoxidized Soybean Oil as a High-Efficiency Triboelectric Nanogenerator | Intarabumrung, W. Kuntharin, S. Harnchana, V. Prada, T. Kasemsiri, P. Hunt, A.J. Supanchaiyamat, N. |
2022 | ||||
| 5. | Power Output Enhancement of Natural Rubber Based Triboelectric Nanogenerator with Cellulose Nanofibers and Activated Carbon | Mekbuntoon, P. Kaeochana, W. Prada, T. Appamato, I. |
2022 | ||||
| 6. | Ag–Cellulose Hybrid Filler for Boosting the Power Output of a Triboelectric Nanogenerator | Chenkhunthod, S. Yamklang, W. Kaeochana, W. Prada, T. Bunriw, W. |
2023 | ||||
| 7. | Engineering Triboelectric Charge in Natural Rubber-Ag Nanocomposite for Enhancing Electrical Output of a Triboelectric Nanogenerator. | Appamato, I Bunriw, W Harnchana, V Siriwong, C Mongkolthanaruk, W Thongbai, P Chanthad, C Chompoosor, A Ruangchai, S Prada, T Amornkitbamrung, V |
2023 | ||||
| 8. | Fe |
Yamklang, W. Prada, T. Bunriw, W. Kaeochana, W. |
2023 | ||||
| 9. | Preparation of UV-cured cellulose nanocrystal-filled epoxidized natural rubber and its application in a triboelectric nanogenerator. | Somseemee, O Siriwong, K Sae-Oui, P Harnchana, V Appamato, I Prada, T Siriwong, C |
2024 | ||||
| 10. | Multifunctional natural rubber films fabricated via spray coating for enhanced energy harvesting and air filtration performance | Prada, T. Kaeochana, W. |
2025 | Count | 7 | 2 | 2 | 0 |
| Title | Authors | Year | Publication name | Cited count | ||||||||
|---|---|---|---|---|---|---|---|---|---|---|---|---|
| < 2020 | 2021 | 2022 | 2023 | 2024 | 2025 | รวม | ||||||
| 1. | Engineering Bacterial Cellulose Films by Nanocomposite Approach and Surface Modification for Biocompatible Triboelectric Nanogenerator | Mongkolthanaruk, W. Harnchana, V. Pinitsoontorn, S. |
2020 |
ACS Applied Electronic Materials 8 (2), pp. 2498-2506 |
||||||||
| 2. | Enhancement of output power density in a modified polytetrafluoroethylene surface using a sequential O<inf>2</inf>/Ar plasma etching for triboelectric nanogenerator applications | Harnchana, V. Chingsungnoen, A. Thongbai, P. Amornkitbamrung, V. |
2022 |
Nano Research 1 (15), pp. 272-279 |
||||||||
| 3. | Facile Synthesis of Biobased Polyamide Derived from Epoxidized Soybean Oil as a High-Efficiency Triboelectric Nanogenerator | Intarabumrung, W. Kuntharin, S. Harnchana, V. Prada, T. Kasemsiri, P. Hunt, A.J. Supanchaiyamat, N. |
2022 |
ACS Sustainable Chemistry and Engineering 41 (10), pp. 13680-13691 |
||||||||
| 4. | Power Output Enhancement of Natural Rubber Based Triboelectric Nanogenerator with Cellulose Nanofibers and Activated Carbon | Mekbuntoon, P. Kaeochana, W. Prada, T. Appamato, I. |
2022 |
Polymers 21 (14), pp. |
||||||||
| 5. | Ag–Cellulose Hybrid Filler for Boosting the Power Output of a Triboelectric Nanogenerator | Chenkhunthod, S. Yamklang, W. Kaeochana, W. Prada, T. Bunriw, W. |
2023 |
Polymers 5 (15), pp. |
||||||||
| 6. | Fe<inf>3</inf>O<inf>4</inf>-Filled Cellulose Paper for Triboelectric Nanogenerator Application | Yamklang, W. Prada, T. Bunriw, W. Kaeochana, W. |
2023 |
Polymers 1 (15), pp. |
||||||||
| 7. | Multifunctional natural rubber films fabricated via spray coating for enhanced energy harvesting and air filtration performance | Prada, T. Kaeochana, W. |
2025 |
Journal of Materials Science 18 (60), pp. 7517-7534 |
||||||||
| Title | Authors | Year | Journal title | ||
|---|---|---|---|---|---|
| 1. | Engineering Triboelectric Charge in Natural Rubber-Ag Nanocomposite for Enhancing Electrical Output of a Triboelectric Nanogenerator. | Appamato, I Bunriw, W Harnchana, V Siriwong, C Mongkolthanaruk, W Thongbai, P Chanthad, C Chompoosor, A Ruangchai, S Prada, T Amornkitbamrung, V |
2023 |
ACS applied materials & interfaces 1 (15), pp. 973-983 |
|
| 2. | Preparation of UV-cured cellulose nanocrystal-filled epoxidized natural rubber and its application in a triboelectric nanogenerator. | Somseemee, O Siriwong, K Sae-Oui, P Harnchana, V Appamato, I Prada, T Siriwong, C |
2024 |
International journal of biological macromolecules 0 (262), pp. 130109 |
| Title | Authors | Year | Journal title | Cited count | ||||||||
|---|---|---|---|---|---|---|---|---|---|---|---|---|
| < 2020 | 2021 | 2022 | 2023 | 2024 | 2025 | รวม | ||||||
| 1. | Engineering Bacterial Cellulose Films by Nanocomposite Approach and Surface Modification for Biocompatible Triboelectric Nanogenerator | Supanan Jakmuangpak Teerayut Prada Wiyada Mongkolthanaruk Viyada Harnchana Supree Pinitsoontorn |
2020 |
ACS APPLIED ELECTRONIC MATERIALS 8.0 (2.0), pp. 2498.0-2506.0 |
16 | 0 | 0 | 0 | 0 | 0 | 16 | |
| 2. | Enhancement of output power density in a modified polytetrafluoroethylene surface using a sequential O-2/Ar plasma etching for triboelectric nanogenerator applications | Teerayut Prada Viyada Harnchana Anthika Lakhonchai Artit Chingsungnoen Phitsanu Poolcharuansin Narong Chanlek Annop Klamchuen Prasit Thongbai Vittaya Amornkitbamrung |
2022 |
NANO RESEARCH 1.0 (15.0), pp. 272.0-279.0 |
1 | 0 | 0 | 0 | 0 | 0 | 1 | |
| Title | Authors | Year | Journal title |
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| ชื่อโครงการ | Authors | ประเภทโครงการ | ปีงบประมาณ | ทุนวิจับ |
|---|