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Modified cathode-electrolyte interphase toward high-performance batteries
DOI:10.1016/j.xcrp.2022.101197.png)
Abstract
En 中文
A stable and uniform cathode-electrolyte interphase (CEI) is extremely important for rechargeable batteries with high energy densities and long life cycles. The CEI greatly influences the electro-chemical reactions at the interphase while stabilizing the cathode's structure. Because of the complexity of the interfacial reaction, an overall picture of CEI evolution and effective analysis methods is ab-sent in the field. Herein, the formation and evolution mechanism of the CEI in rechargeable batteries are reviewed based on the CEI studies. Diverse advanced characterization methods for the interfa-cial reaction are also summarized. Subsequently, modified strate-gies to enhance the stability of the CEI are introduced, such as CEI-forming additives in electrolytes, localized high-concentration electrolytes, artificial CEIs, and solid-state electrolyte engineering. Finally, challenges and future directions for the CEI are proposed. We hope this review sheds light on future research on CEI layers.
Keywords:
STATE LITHIUM BATTERIES
LAYERED OXIDE CATHODE
HIGH-VOLTAGE
ION BATTERIES
SUPERCONCENTRATED ELECTROLYTES
ELECTROCHEMICAL PERFORMANCE
INTERFACIAL STABILITY
ARTIFICIAL CATHODE
FILM FORMATION
COBALT OXIDE
Journal
IF:
7.3
Papers:
2.7K
Citations:
1.2W

