溶剂化
电解质
离解(化学)
化学
电池(电)
离子键合
金属
隐溶剂化
纳米技术
盐(化学)
化学物理
金属锂
离子液体
材料科学
分解
超分子化学
化学工程
计算化学
强电解质
分子
离子强度
溶剂化壳
流变学
分子动力学
功能(生物学)
作者
Mehdi Karbak,Kyungmin Yim,Ying Shirley Meng,Yuyan Shao,Wu Xu
出处
期刊:Chemical Science
[Royal Society of Chemistry]
日期:2025-01-01
卷期号:16 (44): 20694-20717
被引量:12
摘要
Electrolyte design has long followed a solvation-first paradigm that prioritizes solvents capable of maximizing salt dissociation and ionic conductivity, while treating interfacial degradation and rheological limitations as secondary constraints. Although this approach has enabled significant progress in lithium-ion and sodium-ion batteries, it inherently favors solvent-dominated solvation structures that destabilize reactive metal interfaces. Weakly solvating electrolytes (WSEs) offer a fundamentally different strategy. By using solvents with intrinsically low donor strength and minimal electrostatic affinity for cations, WSEs suppress cation-solvent coordination and promote anion-rich solvation shells without relying on salt superconcentration. This shift lowers desolvation barriers, redirects interfacial decomposition pathways, and supports the formation of inorganic-rich, stable interphases. In this review, we discuss the molecular and solvation criteria that distinguish WSEs from conventional and concentrated or locally concentrated electrolyte systems, examine their implementation across different chemistries, and identify unresolved design challenges. WSEs are presented not as a niche formulation, but as a solvation-centric framework for rethinking electrolyte function in metal battery technologies.
科研通智能强力驱动
Strongly Powered by AbleSci AI