储能
自愈
数码产品
锂(药物)
材料科学
纳米技术
汽车工业
计算机科学
铅(地质)
风险分析(工程)
工程类
电气工程
业务
航空航天工程
功率(物理)
病理
内分泌学
替代医学
地质学
物理
地貌学
医学
量子力学
作者
Lorenzo Mezzomo,Chiara Ferrara,Gabriele Brugnetti,Daniele Callegari,Eliana Quartarone,Piercarlo Mustarelli,Riccardo Ruffο
标识
DOI:10.1002/aenm.202002815
摘要
Abstract Major improvements in stability and performance of batteries are still required for a more effective diffusion in industrial key sectors such as automotive and foldable electronics. An encouraging route resides in the implementation into energy storage devices of self‐healing features, which can effectively oppose the deterioration upon cycling that is typical of these devices. In order to provide a comprehensive view of the topic, this Review first summarizes the main self‐healing processes that have emerged in the multifaceted field of smart materials, classifying them on the basis of their recovering mechanisms. Then, attention is closely focused on self‐healable energy storage devices. In particular, self‐healing in lithium‐ion and lithium–metal batteries is discussed, emphasizing both the physical (cracks, fractures, cuts, etc.) and chemical (degradation, gas production, etc.) issues that currently threaten the operating life of these devices, and the more effective self‐healing strategies which can prevent or postpone undesired and dangerous failures. Finally, an outlook on the possible resolution of relevant challenges is briefly discussed.
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