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Anode Interfacial Issues in Solid-State Li Batteries:Mechanistic Understanding and Mitigating Strategies 被引量:2
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作者 Jiacheng Wang Liquan Chen +1 位作者 Hong Li Fan Wu 《Energy & Environmental Materials》 SCIE EI CAS CSCD 2023年第4期384-404,共21页
All-solid-state Li metal batteries(ASSLBs)using inorganic solid electrolyte(SE)are considered promising alternatives to conventional Li-ion batteries,offering improved safety and boosted energy density.While significa... All-solid-state Li metal batteries(ASSLBs)using inorganic solid electrolyte(SE)are considered promising alternatives to conventional Li-ion batteries,offering improved safety and boosted energy density.While significant progress has been made on improving the ionic conductivity of SEs,the degradation and instability of Li metal/inorganic SE interfaces have become the critical challenges that limit the coulombic efficiency,power performance,and cycling stability of ASSLBs.Understanding the mechanisms of complex/dynamic interfacial phenomena is of great importance in addressing these issues.Herein,recent studies on identifying,understanding,and solving interfacial issues on anode side in ASSLBs are comprehensively reviewed.Typical issues at Li metal/SE interface include Li dendrite growth/propagation,SE cracking,physical contact loss,and electrochemical reactions,which lead to high interfacial resistance and cell failure.The causes of these issues relating to the chemical,physical,and mechanical properties of Li metal and SEs are systematically discussed.Furthermore,effective mitigating strategies are summarized and their effects on suppressing interfacial reactions,improving interfacial Li-ion transport,maintaining interfacial contact,and stabilizing Li plating/stripping are highlighted.The in-depth mechanistic understanding of interfacial issues and complete investigations on current solutions provide foundations and guidance for future research and development to realize practical application of high-performance ASSLB. 展开更多
关键词 all-solid-state li metal batteries anode interfacial issues interface protection and modification interfacial reaction and evolution li dendrite growth
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Recent advances in solid-state lithium batteries based on anode engineering
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作者 Yun Zheng Yingying Shen +9 位作者 Junpo Guo Jianding Li Jun Wang De Ning Yinan Liu Yike Huang Yuxin Tang Yonghong Deng He Yan Huaiyu Shao 《Nano Research Energy》 2024年第3期107-139,共33页
Since limited energy density and intrinsic safety issues of commercial lithium-ion batteries(LIBs),solid-state batteries(SSBs)are promising candidates for next-generation energy storage systems.However,their practical... Since limited energy density and intrinsic safety issues of commercial lithium-ion batteries(LIBs),solid-state batteries(SSBs)are promising candidates for next-generation energy storage systems.However,their practical applications are restricted by interfacial issues and kinetic problems,which result in energy density decay and safety failure.This review discusses the formation mechanisms of these issues from the perspective of typical solid-state electrolytes(SSEs)and provides an overview of recent advanced anode engineering for SSBs based on representative anodes including Li metal,graphite-based,and Si-based anodes,summarizing the advantages and problems of each strategy.The development of the anode-free batteries concept is demonstrated as well.Finally,recommendations are proposed for the potential directions in future research in anode engineering for SSBs. 展开更多
关键词 solid-state batteries anode materials li dendrite growth interfacial contact
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