美国马里兰大学化学与生物分子工程系王春生教授学术报告通知

发布者:张燕发布时间:2018-06-19浏览次数:624

报告题目:Safe Li-Ion Battery: from Aqueous Electrolytes, Nonflammable Organic Electrolytes to Solid State Electrolytes

报告人:Department of Chemical & Biomolecular Engineering, University of Maryland 王春生教授

报告时间:2018年6月19日(周二) 下午15:00

报告地点:材料学院曹光彪楼7楼,远望庐

邀请人:潘洪革 教授


报告摘要:

Li-ion batteries are the critical enabling technology for the portable devices, electric vehicles (EV), and renewable energy. However, the safety of current batteries still need to be improved to satisfy these requirements. We systematically investigated the electrochemical stability window of the electrolytes, interface/interphase stability and resistance between electrodes and electrolytes. The critical issues limiting these safe electrolytes will be discussed.   

 

报告人简介:

   Dr. Chunsheng Wang is a Professor in the Chemical & Biomolecular Engineering, Department of Chemistry and Biochemistry at the University of Maryland. He is an associate editor of ACS Applied Energy Materials, and UMD Director of a Center for Research In Extreme Battery, a join battery center between Army Research Lab and the University of Maryland. He received Ph. D in Materials Science & Engineering from Zhejiang University, China in 1995. Prior to joining University of Maryland in 2007, he was an assistant professor in Department of Chemical Engineering at Tennessee Technological University (TTU) in 2003-2007 and a research scientist in the Center for Electrochemical System and Hydrogen Research at Texas A&M University in 1998-2003. His research focuses on reachable batteries and fuel cells. He has published more than 200 papers in peer-reviewed journals including Science, Nature Materials, Nature Nanotechnology, Nature Chemistry, Nature Communications. His work has been cited form more than 11700 times with H-index of 58 (ISI). His work on lithium batteries have been featured in NASA Tech Brief, EFRC/DoE newsletter, C&EN etc. Dr. Wang is the recipient of the A. James Clark School of Engineering Junior Faculty Outstanding Research Award in the University of Maryland in 2013, and winner of UMD’s invention of the Year for 2015.

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