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解开谜团:锂离子电池降解机制理解方面的最新突破

Decoding the puzzle: recent breakthroughs in understanding degradation mechanisms of Li-ion batteries.

作者信息

Singh Aditya Narayan, Hassan Kamrul, Bathula Chinna, Nam Kyung-Wan

机构信息

Department of Energy and Materials Engineering, Dongguk University-Seoul, Seoul 04620, Republic of Korea.

Advanced Energy and Electronic Materials Research Center, Dongguk University-Seoul, Seoul 04620, Republic of Korea.

出版信息

Dalton Trans. 2023 Nov 28;52(46):17061-17083. doi: 10.1039/d3dt02957c.

Abstract

Lithium-ion batteries (LIBs) remain at the forefront of energy research due to their capability to deliver high energy density. Understanding their degradation mechanism has been essential due to their rapid engagement in modern electric vehicles (EVs), where battery failure may incur huge losses to human life and property. The literature on this intimidating issue is rapidly growing and often very complex. This review strives to succinctly present current knowledge contributing to a more comprehensible understanding of the degradation mechanism. First, this review explains the fundamentals of LIBs and various degradation mechanisms. Then, the degradation mechanism of novel Li-rich cathodes, advanced characterization techniques for identifying it, and various theoretical models are presented and discussed. We emphasize that the degradation process is not only tied to the charge-discharge cycles; synthesis-induced stress also plays a vital role in catalyzing the degradation. Finally, we propose further studies on advanced battery materials that can potentially replace the layered cathodes.

摘要

锂离子电池(LIBs)因其能够提供高能量密度而始终处于能源研究的前沿。鉴于其迅速应用于现代电动汽车(EVs),了解其降解机制至关重要,因为电池故障可能会给人类生命和财产造成巨大损失。关于这个棘手问题的文献正在迅速增加,而且往往非常复杂。本综述力求简洁地呈现当前的知识,以促进对降解机制有更易于理解的认识。首先,本综述解释了锂离子电池的基本原理和各种降解机制。然后,介绍并讨论了新型富锂阴极的降解机制、用于识别它的先进表征技术以及各种理论模型。我们强调,降解过程不仅与充放电循环有关;合成诱导应力在催化降解方面也起着至关重要的作用。最后,我们建议对可能替代层状阴极的先进电池材料进行进一步研究。

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