A review of interface optimization strategies for solid electrolytes and anode materials

阳极 电解质 材料科学 快离子导体 工艺工程 生化工程 计算机科学 工程类 化学 电极 物理化学
作者
Dandan Wang,Xinyang Wu,Yongpeng Ren,Yaru Li,Xiaolin Xie,Xiqiang Ma,Ihar Razanau,Xuemin Chen,Jinshan Lu,Kun Pan
出处
期刊:Nanoscale advances [Royal Society of Chemistry]
卷期号:7 (15): 4535-4550 被引量:8
标识
DOI:10.1039/d5na00286a
摘要

With the increasing demand for high-performance power batteries in electric vehicles, low-altitude economy, military applications, and other fields, existing liquid electrolyte-based battery technologies are gradually becoming incapable of meeting the energy density and safety requirements. New battery systems based on solid electrolytes are the main candidate materials for future power batteries owing to their high safety and energy density. Thus far, researchers have conducted extensive studies on the ionic/electronic transfer mechanisms of solid electrolytes and electrode materials, as well as the cooperative effects and interface issues between them. Although much progress has been made, the practical application of solid-state batteries is still severely limited by the high interface impedance between the solid electrolyte and the anode. This impedance stems from incompatible physical and chemical properties and dynamic interface evolution. This paper focuses on the latest progress in the interface engineering strategies of solid electrolytes and anodes and systematically analyzes the cooperative coupling effect between charge transfer dynamics and mechanical stability at the interface. This review provides insights into the future research in this field, aiming to offer a new perspective to enhance our understanding of solid-state lithium batteries, thereby facilitating their more optimal design and promoting their practical applications.
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