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1980年,臺灣大學化學系學士
1988年,美國芝加哥大學化學系博士
1989-1991年,麻省理工學院博士後研究
1991-1997年,任臺灣大學化學系副教授
1997-2022年,任臺灣大學化學系教授
2001-2022年,任中央研究院原子與分子科學研究所合聘研究員
2016-2019年,任臺灣大學化學系系主任
2022年,任臺灣大學化學系名譽教授
2026年,任陽明交大應用化學系兼任教授
學術研究代碼: ORCID Profile | Web of Science ResearcherID
著作
1. Pahari, S. K.; Jao, H.; Chang, C.-C.; Su, K.-W.;* Chen, Y.-F.;* Chen, Y.-T.* Glycerol electro-oxidation to dihydroxyacetone with coupled hydrogen production via in situ optimization of water oxidation intermediates. Small, 2025, 21, e04892.
2. Anand, A.; A. Su, A.; Chen, T.-H.; Chen, Y.-F.;* Chen, Y.-T.* Ultrasensitive quantification of thyroid-stimulating hormone and thyroxine by nanoelectronic SnS2 transistor sensors. ACS Sensors, 2025, 10, 4095–4104.
3. Pahari, S. K.; Chen, Y.-T.* In situ observation of photoelectrochemical water oxidation intermediates for selective biomass upgrading with simultaneous hydrogen production. Chemical Engineering Journal, 2023, 473, 145232.
4. Mathew, R. J.; Cheng, K.-H.; Hsu, C.-H.; Peng, Y.-L.; Chand, P. K.; Inbaraj, C. R. P.; Yang, J.-Y.; Lee, C.-H.; Chen, Y.-T.* Near-infrared electroluminescent light-emitting transistors based on CVD-synthesized ambipolar ReSe2 nanosheets. Advanced Optical Materials, 2022, 10, 2102580.
5. Anand, A.; Chen, C.-Y.; Chen, T.-H.; Liu, Y.-C.; Sheu, S.-Y.; Chen, Y.-T.* Detecting glycated hemoglobin in human blood samples using a transistor-based nanoelectronic aptasensor. Nano Today, 2021, 41, 101294.
6. Tseng, C.-A.; Sahoo, P. K.; Lee, C.-P.; Lin, Y.-T.; Xu, J.-H.; Chen, Y.-T.* Synthesis of CoO-decorated graphene hollow nanoballs for high-performance flexible supercapacitors. ACS Applied Materials & Interfaces, 2020, 12, 40426–40432.
7. Yang, P.-K.; Chou, S.-A.; Hsu, C.-H.; Mathew, R. J.; Chiang, K.-H.; Yang, J.-Y.; Chen, Y.-T.* Tin disulfide piezoelectric nanogenerators for biomechanical energy harvesting and intelligent human-robot interface applications. Nano Energy, 2020, 75, 104879.
8. Kataria, M.; Yadav, K.; Cai, S.-Y.; Liao, Y.-M.; Lin, H.-I; Shen, T. L.; Chen, Y.-H.; Chen, Y.-T.;* Wang, W.-H.; Chen, Y.-F.* Highly sensitive, visible blind, wearable, and omnidirectional near infrared photodetectors. ACS Nano, 2018, 12, 95969607.
9. Anand, A.; Chi, C.-H.; Banerjee, S.; Chou, M.-Y.; Tseng, F.-G.; Pan, C.-Y.;* Chen, Y.-T.* The extracellular Zn2+ concentration surrounding excited neurons is high enough to bind amyloid-β revealed by a nanowire transistor. Small, 2018, 14, 1704439.
10. Nikam, R. D.; Sonawane, P. A.; Sankar, R.; Chen, Y.-T.* Epitaxial growth of vertically stacked p-MoS2/n-MoS2 heterostructures by chemical vapor deposition for light emitting devices. Nano Energy, 2017, 32, 454–462.
11. Banerjee, S.; Hsieh, Y.-J.; Liu, C.-R.; Yeh, N.-H.; Hung, H.-H.; Lai, Y.-S.; Chou, A.-C.; Chen, Y.-T.;* Pan, C.-Y.* Differential releases of dopamine and neuropeptide Y from histamine-stimulated PC12 cells detected by an aptamer-modified nanowire transistor. Small, 2016, 12, 5524–5529.
12. Tamalampudi, S. R.; Lu, Y.-Y.; Ulaganathan, R. K.; Sankar, R.; Liao, C.-D.; Boopathi, K. M.; Cheng, C.-H.; Chou, F. C.; Chen, Y.-T.* High performance and bendable few-layered InSe photodetectors with broad spectral response. Nano Letters, 2014, 14, 2800–2806.
13. Li, B.-R.; Hsieh, Y.-J.; Chen, Y.-X.; Chung, Y.-T.; Pan, C.-Y.; Chen, Y.-T.* An ultrasensitive nanowire-transistor biosensor for detecting dopamine release from living PC12 cells under hypoxic stimulation. Journal of the American Chemical Society, 2013, 135, 16034–16037.
14. Li, B.-R.; Chen, C.-W.; Yang, W.-L.; Lin, T.-Y.; Pan, C.-Y.; Chen, Y.-T.* Biomolecular recognition with a sensitivity-enhanced nanowire transistor biosensor. Biosensors and Bioelectronics, 2013, 45, 252–259.
15. Chen, K.-I.; Li, B.-R.; Chen, Y.-T.* Silicon nanowire field-effect transistor-based biosensors for biomedical diagnosis and cellular recording investigation. Nano Today, 2011, 6, 131–154.
16. Cheng, H.-C.; Shiue, R.-J.; Tsai, C.-C.; Wang, W.-H.;* Chen, Y.-T.* High-quality graphene p-n junction via resist-free fabrication and solution-based noncovalent functionalization. ACS Nano, 2011, 5, 2051–2059.
17. Wu, H.-C.; Huang, Y.-C.; Ding, I-K.; Chen, C.-C.; Yang, Y.-H.; Tsai, C.-C.; Chen, C.-D.;* Chen, Y.-T.* Photoinduced electron transfer in dye-sensitized SnO2 nanowire field-effect transistors. Advanced Functional Materials, 2011, 21, 474–479.
18. Lin, T.-W.; Hsieh, P.-J.; Lin, C.-L.; Fang, Y.-Y.; Yang, J.-X.; Tsai, C.-C.; Chiang, P.-L.; Pan, C.-Y.;* Chen, Y.-T.* Label-free detection of protein-protein interactions using a calmodulin-modified nanowire transistor. Proceedings of the National Academy of Sciences U. S. A., 2010, 107, 1047–1052.
一維奈米線、二維奈米簿膜、石墨烯等新型奈米材料之化學合成、元件製備、光電偵測器設計、能源轉換與存儲、及生物感測器應用
利用奈米級場效電晶體、掃描探針顯微術做為生物感測器,探討細胞之蛋白間作用、離子通量、胞吐與內吞、以及神經元相互作用
合成與製造光電催化電極,用於水電解中之陽極與陰極生物質升級反應。

鍾文聖 兼任教授
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