摘要
Materials design using first-principles techniques is one of the ultimate goals in computational materials science. Due to the recent advances in first-principles electronic structure theory and computing power, it is now possible to perform knowledge-based computational design of materials with unique optical, electrical, magnetic, and/or thermal properties that are tuned to specific energy related applications. This approach has now become a vital tool in accelerating scientific discovery of energy materials. In this talk, selective works from my group will be discussed to illustrate how computational methods can be used to understand and design functional energy materials including earth-abundant PV absorber materials; bipolar dopable transparent conducting oxides; oxides for H2 production through PEC water splitting; energy storage materials; and materials for solid state lighting.
报告人:魏苏淮 suhuai.wei@nrel.gov
邀请人:罗卫东 wdluo@sjtu.edu.cn
联系人:杨洋 catherinecherry@sjtu.edu.cn
报告人简介
魏苏淮:男, 1981年6月毕业于复旦大学,获物理学士学位。1985年在美国威廉玛丽学院取得物理学博士学位,之后在美国可再生能源国家实验室任博士后、科学家、资深科学家、首席科学家、研究室主任,一直从事理论凝聚态物理领域的科学研究。近30年来,在固体理论方面做出了重要、杰出的贡献,尤其在半导体化合物、合金、纳米晶体,和能源材料等体系的结构,电学,光学,磁学,以及掺杂等性质的研究领域取得了大量原创性且具有国际影响力的成果,并在研究这些体系的过程中发展了多种计算新方法。在国际知名期刊上已发表SCI论文370余篇,其中包括66篇发表在物理学顶级期刊《物理评论快报》(Physical Review Letters)上。论文引用25000多次,其中超过100次的有65篇;H因子=80。1999年获选为美国物理学会会士(APS Fellow);2007-2010被聘为复旦大学国家高层次人才讲座教授;2014年获选为美国材料学会会士(MRS Fellow)。