Y.-T. Chen's Group

Nanoscale Materials and Bioanalytical Chemistry Laboratory
奈米材料與生化分析實驗室

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The Extracellular Zn2+ Concentration Surrounding Excited Neurons Is High Enough to Bind Amyloid-β Revealed by a Nanowire Transistor

Citation:
Ankur, A., C. - H. Chi, B. Subhasree, M. - Y. Chou, F. - G. Tseng, C. - Y. Pan, and Y. - T. Chen. "The Extracellular Zn2+ Concentration Surrounding Excited Neurons Is High Enough to Bind Amyloid-β Revealed by a Nanowire Transistor." Small 14 (2018): 1704439.
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Recent Publications

  • Coupling between pyroelectricity and built-in electric field enabled highly sensitive infrared phototransistor based on InSe/WSe2/P(VDF-TrFE) heterostructure
  • In situ observation of photoelectrochemical water oxidation intermediates for selective biomass upgrading with simultaneous hydrogen production
  • An anti-ambipolar cryo-phototransistor
  • In Situ Spectroelectrochemical Detection of Oxygen Evolution Reaction Intermediates with a Carboxylated Graphene−MnO2 Electrocatalyst
  • Near-Infrared Electroluminescent Light-Emitting Transistors Based on CVD-Synthesized Ambipolar ReSe2 Nanosheets
  • ABi-Anti-AmbipolarFieldEffectTransistor
  • Zn2+-Depletion Enhances Lysosome Fission in Cultured Rat Embryonic Cortical Neurons Revealed by a Modified Epifluorescence Microscopic Technique
  • SignificantElevationinPotassiumConcentrationSurrounding StimulatedExcitableCellsRevealedbyanAptamer-Modified NanowireTransistor
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