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Lan Fu 副教授学术报告会
  点击数: 1626 发布时间: 2016-12-19 16:39:00
 

报告题目Design, Growth and Fabrication of Compound Semiconductor Nanowires for Optoelectronic/ Photovoltaic Applications

报告时间:20161222 09:30

报告地点:逸夫科教楼1117报告厅

报 告 人:Lan Fu 副教授

工作单位澳大利亚国立大学

举办单位:电子科学与应用物理学院/微电子学院

报告内容简介:With excellent optical and electrical properties such as direct bandgap, large absorption coefficient and charge-carrier mobility, compound semiconductor nanowires (NWs) have shown great promises for electronic, optoelectronic and photovoltaic device applications. Nanowires can be fabricated by a variety of crystal growth techniques, among which the selective area epitaxy (SAE) growth has the advantages of accurate control of the position, geometry, uniformity and doping of NWs to achieve excellent and reproducible device performances. In this talk, we demonstrate the growth of high quality, stacking-fault-free and taper-free wurtzite InP nanowires using selective-area metal-organic chemical vapour deposition (SA-MOCVD), as well as design, fabrication and characterization of a series of nanowire structures for optoelectronic and photovoltaic device applications.

报告人简介:A/Prof. Dr. Lan Fu received BSc degree from Hefei University of Technology in 1993, MSc degree from the University of Science and Technology of China in 1996 and PhD degree from the Australia National University in 2001. Dr. Lan Fu is currently an Associate Professor at the Dept. of Electronic Materials Engineering, Research School of Physics and Engineering, ANU. Dr. Lan Fu has published over 90 journal papers, two book chapters and held two US patents. Dr. Lan Fu was the recipient of the prestigious IEEE Photonic Society Graduate Student Fellowship (2000), ARC Postdoctoral Fellowship (2002), ARF/QEII Fellowship (2005) and Future Fellowship (2012). Dr. Lan Fu is a senior member of IEEE, IEEE/Photonics and EDS societies, and the Chapter Chair of the Nanotechnology Council of IEEE ACT Section. Dr. Lan Fu’s main research interests include design, fabrication and integration of optoelectronic devices (lasers and photodetectors) and high efficiency solar cells based on low-dimensional III-V compound semiconductor structures including quantum wells, self-assembled quantum dots and nanowires grown by metal-organic chemical vapour deposition (MOCVD).

 
 
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