用于高性能锌金属电池的多功能凝胶电解质

IF 8.9 1区 化学 Q1 CHEMISTRY, MULTIDISCIPLINARY Chinese Chemical Letters Pub Date : 2025-07-01 Epub Date: 2024-06-13 DOI:10.1016/j.cclet.2024.110121
Mengya Ge , Zijie Zhou , Huaiyang Zhu, Ying Wang, Chao Wang, Chao Lai, Qinghong Wang
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引用次数: 0

摘要

锌金属电池由于具有能量密度高、安全性好、环境友好等优点,在大规模储能领域被认为是一种很有前途的储能器件。然而,由于含水电解质引起的析氢反应、电解质泄漏和水分蒸发等问题,阻碍了zmb的商业化。凝胶聚合物电解质(GPEs)因其高安全性和低含水量的特点而受到广泛关注。但离子输运速率差、低温易冻结、机械强度低等缺点不利于zmb的快速发展和实际应用。合理设计和制备多功能聚合物基骨架是获得高性能gpe的有效策略。本文综述了近年来各种聚合物gpe的研究进展。综述了添加无机填料、构建双交联网络和引入官能团等提高gpe离子电导率、耐低温性能和机械强度的策略。讨论了gpe对zmb的自愈能力、抑制枝晶生长和循环稳定性的影响。最后,提出了gpe存在的关键问题和发展前景,为gpe的进一步发展提供了可能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

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Multifunctional gel electrolytes for high-performance zinc metal batteries
Zinc metal batteries (ZMBs) are considered to be promising energy storage devices in the field of large-scale energy storage due to the advantages of high energy density, good safety and environmental friendliness. However, the commercialization of ZMBs has been hampered because of the problems caused by aqueous electrolytes, such as hydrogen evolution reaction, electrolyte leakage, and water evaporation. Gel polymer electrolytes (GPEs) have attracted extensive attention due to the features of high security and low water content. However, the disadvantages of poor ion transport rate, easily freezing at low temperature and low mechanical strength are not conducive to the rapid development and practical application of ZMBs. The rational design and fabrication of multifunctional polymer-based frameworks are considered to be effective strategy to obtain high-performance GPEs. In this review, the recent advancements of GPEs with various polymers are generalized. The strategies for the improvement of ionic conductivity, low temperature resistance and mechanical strength of these GPEs, such as adding inorganic fillers, building double cross-linked networks and introducing functional groups, are summarized. The effects of the GPEs on the self-healable ability, inhibiting dendrite growth, and cycling stability of the ZMBs are also discussed. Finally, the key problems and development prospects of GPEs are proposed, which will provide possibility for the further development of GPEs.
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来源期刊
Chinese Chemical Letters
Chinese Chemical Letters 化学-化学综合
CiteScore
14.10
自引率
15.40%
发文量
8969
审稿时长
1.6 months
期刊介绍: Chinese Chemical Letters (CCL) (ISSN 1001-8417) was founded in July 1990. The journal publishes preliminary accounts in the whole field of chemistry, including inorganic chemistry, organic chemistry, analytical chemistry, physical chemistry, polymer chemistry, applied chemistry, etc.Chinese Chemical Letters does not accept articles previously published or scheduled to be published. To verify originality, your article may be checked by the originality detection service CrossCheck.
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