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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Sn-Doping Enhanced Ultrahigh Mobility In1−xSnxSe Phototransistor

Citation:
C.R.P.Inbaraj, V. K. Gudelli, R. J. Mathew, R. K. Ulaganathan, R. Sankar, H. Y. Lin, H. - I. Lin, Y. - M. Liao, H. - Y. Cheng, K. - H. Lin, F. C. Chou, Y. - T. Chen, C. - H. Lee, G. - Y. Guo, and Y. - F. Chen. "Sn-Doping Enhanced Ultrahigh Mobility In1−xSnxSe Phototransistor." ACS Appl. Mater. Interfaces 11 (2019): 24269−24278.
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Recent Publications

  • Silicon nanowire field-effect transistor-based biosensors for biomedical diagnosis and cellular recording investigation
  • High-quality graphene p-n junctions via resist-free fabrication and solution-based non-covalent functionalization
  • Surface potential variations on a silicon nanowire transistor in biomolecular modification and detection
  • Photoinduced electron transfer in dye-sensitized SnO2 nanowire field-effect transistors
  • Label-free detection of protein-protein interactions using a calmodulin-modified nanowire transistor
  • Dynasore inhibits rapid endocytosis in bovine chromaffin cells
  • A reversible surface functionalized nanowire transistor to study protein-protein interactions
  • Electron hopping conduction in highly disordered carbon coils
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