from    
to    
search  

 


Linker-Mediated Assembly: from Colloidal LEGOs to COVID Testing
Chemical Biopsy Probe, a Tool for Next Generation of Analytical Chemists
清华2024高分子前沿讲座 高分子微球的研究和工业应用【报告取消】
新型核酸药物开发和生物医学应用
报告题目:
INTEGRATED NOVEL NANOSTRUCTURES AND MATERIALS FOR FLEXIBLE AND HIGH-PERFORMANCE DEVICES
 报告人:
Dr. Zhiyong Fan
Department of Electronic and Computer Engineering, Hong Kong 
University of Science and Technology, Hong Kong SAR, China
报告时间:
2018-05-09 14:30
报告地点:
化学老馆301会议室
主办单位:
化学系
  简介:

Abstract
Materials made of nano/micro-structures have unique physical properties, such as fast carrier transport, high surface-to-volume ratio, mechanical flexibility, sub-wavelength optical waveguiding, etc. These intriguing properties can be harnessed for a variety of applications in electronics and photonics. In the past, we have fabricated an assortment of arrayed nanostructures consist of nanowires, nanopillars, nanocones, etc., using a variety of materials from inorganic semiconductors to organometal perovskite materials. These nanomaterials can be fabricated with chemical vapor deposition method and/or printable method with scalability. The optical properties of these nanostructures have been systematically investigated and the mechanism of light trapping was revealed. Meanwhile, the materials have been fabricated into various electronic devices, including sensors, light emitting diode and solar cells. The study has shown that three-dimensionally (3-D) arrayed nanostructures can help to improve device performance as well as the flexibility. However, proper structural optimization is not trivial. Particularly, using printable method and template guided growth method, semiconductor nanowires have been fabricated into planar arrays and 3-D arrays for photodetectors. Overall, the nanostructure integration methodology that we developed may enable many applications on electronics and optoelectronics in the future.

Brief Biography
Dr. Zhiyong Fan received his B. S. and M. S. degrees in Materials Science from Fudan University, Shanghai, China, in 1998 and 2001. He received Ph.D. degree from University of California, Irvine in 2006 in Materials Science as well. From 2007 to 2010, he worked at University of California, Berkeley as a postdoctoral fellow in department of Electrical Engineering and Computer Sciences, with a joint appointment with Lawrence Berkeley National Laboratory. In May 2010, he joined The Hong Kong University of Science and Technology (HKUST) and currently he is an associate professor in department of Electronic and Computer Engineering. Dr. Fan has won a number of awards including, UC Berkeley BSAC Outstanding Research Presentation Award, HKUST Young Investigator Award and HKUST President’s Award and Innovation Award, etc. His research interest focuses on fabrication and characterization of nanomaterials and nanostructures, their applications for electronics and energy harvesting. He has published more than130 referred papers with over 13,000 citations and H-index of 54. Currently he is serving as an Associate Editor Nanoscale Research Letters.

今日相关信息
Defining protein networks that mediat...
学堂班系列讲座:科学研究中的协同效应与深...
 
同类别相关信息
Oxygen Driven Fragment Coupling for...
学堂班系列讲座:“手性质子梭催化剂”
基于局域中短程结构及其有序/无序度调控...
体外生命系统工程系列讲座(第九期)
Monolayer-based Materials for the S...
学术活动