2025
A. Anand, F.-Y. Su, T.-H. Chen, Y.-F. Chen*, and Y.-T. Chen*. “Ultrasensitive quantification of thyroid-stimulating hormone and thyroxine by nanoelectronic SnS2 transistor sensors.” ACS Sensors 10 (2025): 4095-4014. [view]
K. Pahari, H. Jao, C.-C. Chang, K.-W. Su*, Y.-F. Chen*, and Y.-T. Chen*. “Glycerol electro-oxidation to dihydroxyacetone with coupled hydrogen production via in situ optimization of water oxidation intermediates.” Small (2025) e04892. [view]
2023
Sandip K. Pahari , Yit-Tsong Chen. “In situ observation of photoelectrochemical water oxidation intermediates for selective biomass upgrading with simultaneous hydrogen production.” Chemical Engineering Journal (2023) :1385-8947. [view]
Roshan Jesus Mathew, Kai-Hsiang Cheng, Christy Roshini Paul Inbaraj, Raman Sankar, Xuan P.A. Gao, and Yit-Tsong Chen. “An Anti-Ambipolar Cryo-Phototransistor.” Adv. Electron. Mater. 9 (2023) : 2300095. [view]
Christy Roshini Paul Inbaraj, Roshan Jesus Mathew, Raman Sankar, Hsia Yu Lin, Nian-Xiu Li,Yit-Tsong Chen, and Yang-Fang Chen. “Coupling between Pyroelectricity and Built-In Electric Field Enabled Highly Sensitive Infrared Phototransistor Based on InSe/WSe2/P(VDF-TrFE) Heterostructure.” ACS Applied materials & Interfaces 15 (2023): 19121-19128. [view]
2022
“In Situ Spectroelectrochemical Detection of Oxygen Evolution Reaction Intermediates with a Carboxylated Graphene−MnO2 Electrocatalyst.” ACS Applied materials & Interfaces 14 (2022): 5177−5182. [view]
“Near-Infrared Electroluminescent Light-Emitting Transistors Based on CVD-Synthesized Ambipolar ReSe2 Nanosheets.” Adv. Optical Mater. 10 (2022): 2102580. [view]
2021
“ABi-Anti-AmbipolarFieldEffectTransistor.” ACS Nano 15 (2021): 8686−8693. [view]
“Detecting glycated hemoglobin in human blood samples using a transistor-based nanoelectronic aptasensor .” Nano Today 41 (2021): 101294. [view]
“SignificantElevationinPotassiumConcentrationSurrounding StimulatedExcitableCellsRevealedbyanAptamer-Modified NanowireTransistor.” ACS Appl. Bio. Mater. 4 (2021): 6865−6873. [view]
“Zn2+-Depletion Enhances Lysosome Fission in Cultured Rat Embryonic Cortical Neurons Revealed by a Modified Epifluorescence Microscopic Technique.” Microscopy and Microanalysis 27 (2021): 420-424. [view]