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Nanostructured strategies towards boosting organic lithium-ion batteries

查看全文 作  者:Yujing [1]Liu;Guoyuan [1]Sun;Xiaohan [1]Cai;Fan [1]Yang;Cong [1]Ma;Min [1]Xue;Xinyong [1]Tao 高影响力作者 机构地区:[1]College of Materials Science and Engineering,Zhejiang University of Technology,Hangzhou 310014,Zhejiang,China高影响力机构 出  处:《Journal of Energy Chemistry》索引2021年第30卷第3期,共15页高影响力期刊 基  金:financial support by the National Natural Science Foundation of China(Grant nos.51722210,51972285 and U1802254);the Natural Science Foundation of Zhejiang Province(Grant nos.LY17E020010,LD18E020003 and LQ20E030012);the Innovation Fund of the Zhejiang Kechuang New Materials Research Institute(Grant no.ZKN-18-P05)。 摘  要:Pursuing material development for next-generation batteries,organic electrode materials have shown great potential for lithium-ion batteries.However,their widespread adopting is plagued by intrinsic problems such as poor electronic conductivity,high dissolution inside electrolytes and unstable chemical peculiarity.Recently,nanostructured-strategies promoted organic electrodes with exotic properties for enhancing electron and ion transport together with the stability during electrochemical process,have received increasing attention and have been extensive applied in boosting the organic lithium-ion based energy storage.In this review,we summarize the applications of nanostructures to improve the performance of both organic anodes and cathodes,including(i)nanoscale design of zero-dimensional organic electrode materials,(ii)strategies of one-dimensional nanostructured organic electrode materials,(iii)construction of two-dimensional nanosized organic composite electrodes,and(iv)three-dimensional exploration of nanosized organic electrodes.We hope to stimulate high-quality applied research on understanding and handling the relationship between the nanostructure and performance of organic lithium-ion batteries that might speed up the commercialization of organic lithium ion batteries. 关 键 词:Lithium-ion battery NANOSTRUCTURE Organic electrode
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