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Discovery and design of lithium battery materials via high-throughput modeling 被引量:1

Discovery and design of lithium battery materials via high-throughput modeling
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摘要 This paper reviews the rapid progress in the field of high-throughput modeling based on the Materials Genome Initiative, and its application in the discovery and design of lithium battery materials. It offers examples of screening, optimization and design of electrodes, electrolytes, coatings, additives, etc. and the possibility of introducing the machine learning method into material design. The application of the material genome method in the development of lithium battery materials provides the possibility to speed up the upgrading of new candidates in the discovery of lots of functional materials. This paper reviews the rapid progress in the field of high-throughput modeling based on the Materials Genome Initiative, and its application in the discovery and design of lithium battery materials. It offers examples of screening, optimization and design of electrodes, electrolytes, coatings, additives, etc. and the possibility of introducing the machine learning method into material design. The application of the material genome method in the development of lithium battery materials provides the possibility to speed up the upgrading of new candidates in the discovery of lots of functional materials.
作者 Xuelong Wang Ruljuan Xiao Hong Li Llquan Chen 王雪龙;肖睿娟;李泓;陈立泉
出处 《Chinese Physics B》 SCIE EI CAS CSCD 2018年第12期27-34,共8页 中国物理B(英文版)
基金 Project supported by the National Natural Science Foundation of China(Grant No.51772321) the Beijing Science and Technology Project(Grant No.D171100005517001) the National Key Research and Development Plan(Grant No.2017YFB0701602) the Youth Innovation Promotion Association(Grant No.2016005)
关键词 Materials Genome Initiative lithium battery materials high-throughput simulations material design Materials Genome Initiative lithium battery materials high-throughput simulations material design
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