氟离子电池电解质的最新进展、挑战和前景

Ming Zhang , Xiaocao Cao , Yaowei Hao , Haodong Wang , Jian Pu , Bo Chi , Zhongrong Shen
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引用次数: 0

摘要

在开发用于制造高能量密度电池的新电化学概念的过程中,氟离子电池(FIBs)已成为下一代电化学储能技术的有效候选技术之一,在能量密度、无树枝状晶粒的安全性以及消除对稀缺锂和钴资源的依赖等方面,都显示出与当前锂离子电池(LIBs)相媲美甚至超越的潜力。然而,FIBs 的开发仍处于起步阶段,其性能远未达到令人满意的程度,电解质较低的氟离子传导性和电极的可逆性等问题阻碍了其商业化。以往的综述主要集中在无机固体电解质方面,对各种氟离子导体的发展及其离子传导性能只做了简要强调。因此,本综述总结了当前各种电解质的发展情况,从氟离子导体的历史、结构和分类入手,系统概述了当前各种氟离子电解质的进展情况,并简要讨论了离子传输机制。介绍了各类氟离子电解质的最新进展。重点介绍了优化氟离子电解质离子传导特性的方法。最后,通过强调氟离子电解质的一些关键问题、挑战和前景,展望了氟离子电解质的未来研究方向。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Recent progress, challenges and prospects of electrolytes for fluoride-ion batteries

In the development of new electrochemical concepts for the fabrication of high-energy-density batteries, fluoride-ion batteries (FIBs) have emerged as one of the valid candidates for the next generation electrochemical energy storage technologies, showing the potential to match or even surpass the current lithium-ion batteries (LIBs) in terms of energy density, safety without dendritic grains, and elimination of dependence on scarce lithium and cobalt resources. However, the development of FIBs is still in its infancy and their performance is far from satisfactory, with issues such as the lower fluoride-ion conductivity of the electrolytes and the reversibility of the electrodes hindering their commercialization. Previous reviews have mainly focused on inorganic solid electrolytes with a brief emphasis on the development of various fluoride-ion conductors and their ion-conducting properties. Therefore, this review summarizes the current developments in various electrolytes, a systematic overview of the current progress for various fluoride-ion electrolytes is presented by beginning with the history, structure and classification of FIBs, ion-transport mechanisms are briefly discussed. Recent advances in different classes of fluoride-ion electrolytes are described. The methods for optimizing the ionic conductivity characteristics of the fluoride-ion electrolytes are highlighted. Finally, an outlook on the future research direction of FIBs is given by highlighting some critical issues, challenges and prospects of fluoride-ion electrolytes.

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