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Advanced Electrode Materials in Lithium Batteries:Retrospect and Prospect

作     者:Xin Shen Xue-Qiang Zhang Fei Ding Jia-Qi Huang Rui Xu Xiang Chen Chong Yan Fang-Yuan Su Cheng-Meng Chen Xingjiang Liu Qiang Zhang 

作者机构:Beijing Key Laboratory of Green Chemical Reaction Engineering and TechnologyDepartment of Chemical EngineeringTsinghua UniversityBeijing 100084China Science and Technology on Power Sources LaboratoryTianjin Institute of Power SourcesTianjin 300384China Advanced Research Institute of Multidisciplinary ScienceBeijing Institute of TechnologyBeijing 100081China CAS Key Laboratory of Carbon MaterialsInstitute of Coal ChemistryChinese Academy of SciencesTaiyuan030001 ShanxiChina 

出 版 物:《Energy Material Advances》 (能源材料前沿(英文))

年 卷 期:2021年第2021卷第1期

页      面:361-375页

核心收录:

学科分类:0808[工学-电气工程] 081704[工学-应用化学] 08[工学] 0817[工学-化学工程与技术] 

基  金:the National Natural Science Foundation of China(21776019,21825501,and U1801257) Energy Material Advances 11 the National Key Research and Development Program(2016YFA0202500) the Beijing Natural Science Foundation(L182021) the Foundation of National Key Laboratory(6142808190201) the Scientific and Technological Key Project of Shanxi Province(20191102003) the Tsinghua University Initiative Scientific Research Program.References 

主  题:electrode breakthrough corners 

摘      要:Lithium-(Li-)ion batteries have revolutionized our daily life towards wireless and clean style,and the demand for batteries with higher energy density and better safety is highly *** next-generation batteries with innovatory chemistry,material,and engineering breakthroughs are in strong pursuit ***,the key historical developments of practical electrode materials in Li-ion batteries are summarized as the cornerstone for the innovation of next-generation *** addition,the emerging electrode materials for next-generation batteries are discussed as the revolving challenges and potential ***,the future scenario of high-energy-density rechargeable batteries is *** combination of theory and experiment under multiscale is highlighted to promote the development of emerging electrode materials.

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