稳定优质锂离子电池的阴极-电解质界面

IF 7.6 Q1 ENGINEERING, CHEMICAL
Yunze Zhang , Jian Wang
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引用次数: 0

摘要

阴极-电解质界面(CEI)对锂离子电池的能量密度和循环稳定性起着至关重要的作用。然而,其复杂的形成机制、动态演变以及与电池组件的相互作用为基本认识和有针对性的调控带来了重大挑战。虽然之前的研究主要集中在修改大块电解质溶剂化结构和应用惰性阴极涂层上,但本观点分析了CEI形成和稳定的机制,特别强调了阴极前界面工程,近表面双电层调制和功能涂层设计。展望了未来的研究前景,重点介绍了具有高时空分辨率的原位表征技术,以探测瞬态界面过程,以及构建CEI架构的创新策略。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Stabilizing the cathode-electrolyte interphase for superior Li-ion batteries

Stabilizing the cathode-electrolyte interphase for superior Li-ion batteries
The cathode-electrolyte interphase (CEI) plays a pivotal role in determining the energy density and cycling stability of lithium-ion batteries. However, its complex formation mechanisms, dynamic evolution, and interplay with battery components pose significant challenges for a fundamental understanding and targeted regulation. While prior research has focused on modifying bulk electrolyte solvation structures and applying inert cathode coatings, this perspective analyzes the mechanisms of CEI formation and stabilization, with particular emphasis on cathode pre-interphase engineering, near-surface electric double-layer modulation, and functional coating design. Future research prospects are outlined, highlighting the advanced in situ characterization techniques with high spatiotemporal resolution to probe transient interfacial processes, along with innovative strategies for constructing CEI architectures.
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来源期刊
Green Chemical Engineering
Green Chemical Engineering Process Chemistry and Technology, Catalysis, Filtration and Separation
CiteScore
11.60
自引率
0.00%
发文量
58
审稿时长
51 days
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