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西湖工程讲座系列第32期 | Yadong Yin 殷亚东: Designing Plasmonic Nanostructures for Smart Materials
时间
2022年12月20日(周二)
上午09:00-10:30
地点
线上:ZOOM ID 859 5063 5370
主持
西湖大学工学院 黄嘉兴博士
受众
全体师生
分类
学术与研究
西湖工程讲座系列第32期 | Yadong Yin 殷亚东: Designing Plasmonic Nanostructures for Smart Materials
时间:2022年12月20日(周二) 上午09:00-10:30
Time: 09:00-10:30 am, Tuesday, December 20, 2022
线上:ZOOM ID 859 5063 5370
Online: ZOOM ID 859 5063 5370
主持人: 西湖大学工学院 黄嘉兴博士
Host: Dr. Jiaxing Huang, Chair Professor, Westlake University
语言:英文
Language: English
主讲嘉宾/Speaker:

Prof. Yadong Yin 殷亚东
School of Chemical
University of California, Riverside
主讲人简介/Biography:
Prof. Yin received his Ph.D. from the University of Washington in Seattle in 2002 under the supervision of Prof. Younan Xia. He became a postdoctoral fellow at the University of California, Berkeley in 2003, working with Prof. A. Paul Alivisatos, and then a staff scientist at Lawrence Berkeley National Laboratory in 2005. He joined the Department of Chemistry, University of California, Riverside in 2006 and became a Full Professor in 2014. He received some recognition, including the Cottrell Scholar Award (2009), DuPont Young Professor Grant (2010), 3M Nontenured Faculty Grant (2010), NSF CAREER award (2010), MRS Fellow (2020), and Langmuir Lectureship Award (2022). Being named as one of the world's highly cited researchers by Clarivate Analytics from 2014 to 2022, he is currently an associate editor of the Journal of Materials Chemistry C and Materials Advances, and serves on the editorial board of many journals, including Advanced Functional Materials, Science China Materials, Research, Nano Letters, and Chemical Reviews.
讲座摘要/Abstract:
Smart materials hold great promise for many intriguing applications as they exhibit chemical and physical responses to the applied external stimuli. This presentation will focus on the synthesis and assembly of nanostructured plasmonic materials with responsive optical, acoustic, and mechanical properties that can find applications in printing, sensing, bioimaging, anti-counterfeiting, and soft robotics. We begin by discussing our recent progress in developing surface-functionalized plasmonic nanostructures and their assembly into superstructures with tunable plasmonic coupling that can respond to external stimuli. Then, we report a class of novel magnetic/plasmonic hybrid nanostructures that integrate the shape-dependent plasmonic and magnetic properties to enable the design of smart materials with colorimetric and mechanical responses.
讲座联系人/Contact:
黄嘉兴:jiaxing-huang@westlake.edu.cn
