纳米技术
锂(药物)
化学
电极
电化学
储能
纳米尺度
插层(化学)
离子
氧化还原
电池(电)
材料科学
无机化学
热力学
物理化学
物理
内分泌学
功率(物理)
有机化学
医学
作者
Sung‐Kyun Jung,Insang Hwang,Donghee Chang,Kyu‐Young Park,Sung Joo Kim,Won Mo Seong,Donggun Eum,Jooha Park,Byung‐Hoon Kim,Jihyeon Kim,Jae Hoon Heo,Kisuk Kang
出处
期刊:Chemical Reviews
[American Chemical Society]
日期:2019-12-03
卷期号:120 (14): 6684-6737
被引量:186
标识
DOI:10.1021/acs.chemrev.9b00405
摘要
The electrochemical properties and performances of lithium-ion batteries are primarily governed by their constituent electrode materials, whose intrinsic thermodynamic and kinetic properties are understood as the determining factor. As a part of complementing the intrinsic material properties, the strategy of nanosizing has been widely applied to electrodes to improve battery performance. It has been revealed that this not only improves the kinetics of the electrode materials but is also capable of regulating their thermodynamic properties, taking advantage of nanoscale phenomena regarding the changes in redox potential, solid-state solubility of the intercalation compounds, and reaction paths. In addition, the nanosizing of materials has recently enabled the discovery of new energy storage mechanisms, through which unexplored classes of electrodes could be introduced. Herein, we review the nanoscale phenomena discovered or exploited in lithium-ion battery chemistry thus far and discuss their potential implications, providing opportunities to further unveil uncharted electrode materials and chemistries. Finally, we discuss the limitations of the nanoscale phenomena presently employed in battery applications and suggest strategies to overcome these limitations.
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