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Yue Zhao

作者:  發(fā)布:2015-05-16 00:00:00  點(diǎn)擊量:

報告題目:Control of Stimuli-Responsive Polymers by New Methods and Materials Design

人:Professor Yue ZhaoUniversité de Sherbrooke  Canada

報告時間:2015516日上午1030

報告地點(diǎn):化學(xué)樓二樓一號會議室

報告人簡介:

Yue Zhao received his BSc in 1982 from Chengdu University of Science and Technology (now Sichuan University). He went to France in 1983 for graduate studies at the École Supérieure de Physique et de Chimie Industrielles de Paris (ESPCI). After obtaining his PhD in 1987, he went to Canada for postdoctoral studies at the Université Laval. In 1991, he joined the Chemistry Department of the Université de Sherbrooke and has been a full professor since 2000. He was a chair professor of Chang Jiang Scholar at Sichuan University (2007-2010). Zhao’s main research interests are the design, synthesis, study and exploitation for applications of self-assembled, nanostructured and stimuli-responsive polymers and liquid crystalline materials. He has published over 175 papers in primary journals and edited a book on azobenzene-containing polymers and liquid crystals published by Wiley. Among the awards and honors Zhao received, he won the inaugural Public Prize for the Discovery of the Year 2005 in Quebec (pioneering work on photocontrollable polymer micelles), was the recipient of the Macromolecular Science and Engineering Award of the Chemical Institute of Canada (CIC) in 2013, and was elected CIC Fellow in 2014.

報告簡介:

Prof. Zhao will report on their recent studies on polymers that are responsive to a variety of stimuli such as light, ultrasound and carbon dioxide. They have developed new methods and materials design to make polymers respond to stimuli in a controllable or predictable manner, or in a way to exhibit a useful function. The studies which he will discuss include 1) near-infrared light-sensitive polymer micelles and hydrogels, 2) ultrasound- and light-controllable shape-memory and healable polymers, 3) CO2-switchable polymers, and 4) azobenzene liquid crystalline block copolymers for oriented self-assemblies.

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