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Enhancing cathode-electrolyte interface stability in high-voltage lithium metal batteries through phase-separated cyano-containing copolymer-based elastomeric electrolytes

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Abstract
Solid-state polymer electrolytes (SPEs) are a promising alternative to conventional liquid electrolytes in lithium metal batteries (LMBs). However, their low ionic conductivity and poor oxidation stability hinder the operation of LMBs, particularly when paired with high-voltage, Ni-rich cathodes. To address this challenge, our aim is to integrate the cyano group, known for its ability to enhance oxidation stability through its electron-withdrawing property, into the phase-separated SPEs that exhibit superior ionic conductivity and mechanical properties. Specifically, we synthesize cyano-containing SPEs by incorporating cyanoethyl acrylate (CEA) into an elastomeric electrolyte featuring a bicontinuous structure composed of cyano-containing copolymers and plastic crystals. The phase-separated structure of various SPEs is controlled by adjusting the molar ratio of butyl acrylate (BA) and CEA. At the optimal molar ratio of BA to CEA (specifically, 9:1), this tailored electrolyte shows high ionic conductivity (9.8 × 10−4 S cm−1 at 30 °C) and cycling performance at high cut-off voltage of 4.7 V vs. Li/Li+. The cyano-containing bicontinuous SPEs are expected to play a pivotal role in enhancing oxidation stability and developing robust interfaces consisting of transition metal-anchored framework and inorganic-rich components. These interfaces effectively suppress degradation of cathode structure, thereby achieving high-energy solid-state LMBs. © 2024 Elsevier B.V.
Author(s)
Kwon, Hyun SooLee, Michael J.Kwon, Seung HoPark, JinseokSeong, HyeonseokKim, SaehunByun, YouyoungLee, EunjiChoi, Nam-SoonLee, Seung WooKim, Bumjoon J.
Issued Date
2025-01
Type
Article
DOI
10.1016/j.cej.2024.158829
URI
https://scholar.gist.ac.kr/handle/local/9114
Publisher
Elsevier B.V.
Citation
Chemical Engineering Journal, v.504
ISSN
1385-8947
Appears in Collections:
Department of Materials Science and Engineering > 1. Journal Articles
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