國立台灣大學光電工程學研究所
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本所成員-教師
 
姓名 學歷 相關連結
  何志浩 國立清華大學材料科學工程 個人資料 | 著作列表 | 收授學生 | 網頁 | 實驗室
E-mail jhhe@cc.ee.ntu.edu.tw
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網頁 http://cc.ee.ntu.edu.tw/~jhhe/index.htm
研究領域 一維奈米線之電性、光電特性、光特性分析之研究,與其相關之光電應用。例如,染料太陽能電池、生物與化學分子偵測。
個人簡介 Dr. He received his B.S. and Ph.D degree from National Tsing Hua University in 1999 and 2005, respectively. He has worked as a postdoctoral fellow at National Tsing Hau University and at Georgia Tech from 2005 to 2007. He joined Graduate Institute of Electro-Optical Engineering and Department of Electrical Engineering at National Taiwan University in Feb. 2007 as an assistant professor.Dr. He has authored over 20 peer reviewed publications and 20 other conference proceeding publications in the field of nanoscience and nanotechnology. His research focuses on both understanding the fundamental aspect of low-dimensional charge transport phenomena in semiconductor nanowire structures and employing these properties to create novel functional nanoelectronic devices as an application. The idea central to the vision underlying this work is that by developing and following a common intellectual path – a bottom-up paradigm for nanoscale science and technology – it will be possible to assemble virtually any kind of device or functional system, ranging from ultra-sensitive light sensors to powerful nanocomputers, and also to explore new areas of science that exist, for example, at the interface between biology and nanotechnology. His works have been highlighted by several scientific magazines such as Nature, Chemical & Engineering News, and Nano Today. He is committed to realizing this intellectual vision through studies currently focused on three major areas: (1) fabrication and characterization of novel low-dimensional photonic nanomaterials, (2) fundamental physical properties of the nanomaterials and design of functional nano-devices (electronics and optoelectronics), and (3) exploration of the interface/communication between biological systems and nanoscale devices. This research by definition is highly interdisciplinary. Utilizing and developing concepts and techniques from engineering, material, chemistry, physics and biology sciences is necessary to achieve these goals. 
重要著作

1.J.H. He, Y.Y. Zhang, J. Liu, D. Moore, Z.L. Wang, G. Bao, ”ZnS/Silica Nanocable Field Effect Transistor as Biological and Chemical Nanosensors,” J. Phys. Chem. C 33, 12152 (2007)
2.C.L. Hsin, J.H. He, C.Y. Lee, W.W. Wu, P.H. Yeh, L.J. Chen, and Z.L. Wang, “Lateral Self-Aligned p-Type In2O3 Nanowire Arrays Epitaxially Grown on Si Substrates,” Nano Lett. 7, 1799 (2007)
3.J.H. He, C.L. Hsin, J. Liu, L.J. Chen, and Z.L. Wang, ”Piezoelectric Gated Diode of a Single ZnO Nanowire,” Adv. Mater. 19, 781 (2007)
4.J.H. He, R. Yang, Y.L. Chueh, L.J. Chou, L.J. Chen, and Z.L. Wang, “Aligned AlN Nanorods with Multi-Tipped Surfaces – Growth, Field Emission, and Cathodoluminescence Properties,” Adv. Mater. 18, 650 (2006)
5.J.H. He, C. Lao, L.J. Chen, D. Davidovic, and Z.L. Wang, “Large-scale Ni-Doped ZnO Nanowire Arrays and Electrical and Optical Properties,” J. Am. Chem. Soc. 127, 16376 (2005)

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