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首页> 外文期刊>Journal of Materials Chemistry, A. Materials for energy and sustainability >In situ observation of lithium metal plating in a sulfur-based solid electrolyte for all-solid-state batteries
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In situ observation of lithium metal plating in a sulfur-based solid electrolyte for all-solid-state batteries

机译:在全固态电池中硫基固体电解质中锂金属镀层的原位观察

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All-solid-state batteries (ASSBs) based on solid-state electrolytes (SSEs) are receiving significant interest as promising candidates to overcome the limitations of conventional lithium ion batteries (LIBs), particularly safety problems. Development of operando or in situ microscopy and spectroscopy measurement techniques is crucial for real-time observations of the morphological and chemical phenomena occurring in ASSBs during charge/discharge cycles. In this study, we develop in situ Auger electron microscopy and spectroscopy techniques for real-time investigations of the various phenomena occurring in ASSBs based on pelletized argyrodite (Li6PS5Cl; LiPS) SSEs. Volume expansion/contraction of the Li metal anode owing to the injection/extraction of Li is observed during the charge/discharge process. Li migration to the Li metal anode is strongly dependent on the pressing force applied to the sample during the charge/discharge cycles. At the sample position under excessively high local pressure, a superabundant amount of Li metal migrates to the anode, and irreversible growth of Li metal is observed. In contrast, the volume expansion of the Li metal anode is negligible at the unpressurised sample position, resulting in poor capacity of the ASSBs. This result demonstrates that homogeneous pressurization of the sample is a critical factor for a stable charge/discharge process. The results provided herein can guide the development of practical ASSBs in industry, and the novel in situ measurement technique can be a useful tool for the real-time analysis of various phenomena in ASSBs.
机译:基于固态电解质(SSE)的全固态电池(ASSB)接受显着兴趣,因为克服常规锂离子电池(LIBS),特别是安全问题的局限性的候选者。开发型或原位显微镜和光谱测量技术对于在充电/放电循环期间在ASSB中发生的形态学和化学现象的实时观察至关重要。在这项研究中,我们开发了原位螺旋钻电子显微镜和光谱技术,用于基于造粒的argyrodite(Li6PS5Cl;嘴唇)SSES的ASSB中发生的各种现象的实时调查。由于在充电/放电过程中观察到锂金属阳极的体积膨胀/收缩。 Li迁移到Li金属阳极的强烈依赖于在充电/放电循环期间施加到样品的压力。在过高局部压力下的样品位置,锂金属的超余量迁移到阳极,并且观察到Li金属的不可逆生长。相反,Li金属阳极的体积膨胀在未充分的样品位置可忽略不计,导致ASSB的差。该结果表明样品的均匀加压是稳定充电/放电过程的关键因素。本文提供的结果可以指导在工业中的实际ASSB的发展,并且本质上的新颖测量技术可以是用于ASSB中各种现象的实时分析的有用工具。

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