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All-Solid-State Printed Bipolar Li–S Batteries

机译:全固态印刷双极锂电池

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摘要

Despite their potential advantages over currently widespread lithium-ion batteries, lithium-sulfur (Li-S) batteries are not yet in practical use. Here, for the first time bipolar all-solid-state Li-S batteries (ASSLSBs) are demonstrated that exhibit exceptional safety, flexibility, and aesthetics. The bipolar ASSLSBs are fabricated through a solvent-drying-free, ultraviolet curing-assisted stepwise printing process at ambient conditions, without (high-temperature/high-pressure) sintering steps that are required for inorganic electrolyte-based all-solid-state batteries. Two thermodynamically immiscible and nonflammable gel electrolytes based on ethyl methyl sulfone (EMS) and tetraethylene glycol dimethyl ether (TEGDME) are used to address longstanding concerns regarding the grain boundary resistance of conventional inorganic solid electrolytes, as well as the polysulfide shuttle effect in Li-S batteries. The EMS gel electrolytes embedded in the sulfur cathodes facilitate sulfur utilization, while the TEGDME gel composite electrolytes serve as polysulfide-repelling separator membranes. Benefiting from the well-designed cell components and printing-driven facile processability, the resulting bipolar ASSLSBs exhibit unforeseen advancements in bipolar cell configuration, safety, foldability, and form factors, which lie far beyond those achievable with conventional Li-S battery technologies.
机译:尽管与目前广泛使用的锂离子电池相比具有潜在的优势,但锂硫(Li-S)电池尚未投入实际使用。在这里,首次展示了双极全固态Li-S电池(ASSLSB),它们具有出色的安全性,灵活性和美感。双极性ASSLSB通过在环境条件下通过无溶剂干燥,紫外线固化辅助的分步印刷工艺制造而成,而无需进行基于无机电解质的全固态电池所需的(高温/高压)烧结步骤。基于乙基甲基砜(EMS)和四甘醇二甲醚(TEGDME)的两种热力学上不可混溶且不可燃的凝胶电解质用于解决长期以来对常规无机固体电解质的晶界电阻以及Li-中多硫化物穿梭效应的担忧。 S电池。嵌入硫磺阴极中的EMS凝胶电解质促进了硫的利用,而TEGDME凝胶复合电解质充当排斥多硫化物的隔膜。得益于精心设计的电池组件和印刷驱动的便捷可加工性,所得双极ASSLSB在双极电池配置,安全性,可折叠性和形状因素方面展现出无法预料的进步,这远远超出了传统Li-S电池技术所能达到的。

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