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首页> 外文期刊>Journal of physical chemistry letters >Microscopic Origin of the Solid Electrolyte Interphase Formation in Fire-Extinguishing Electrolyte: Formation of Pure Inorganic Layer in High Salt Concentration
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Microscopic Origin of the Solid Electrolyte Interphase Formation in Fire-Extinguishing Electrolyte: Formation of Pure Inorganic Layer in High Salt Concentration

机译:灭火电解质中固体电解质相互相同的显微镜来源:高盐浓度的纯无机层的形成

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摘要

A highly salt-concentrated (HC) electrolyte based on the nonflammable solvent trimethyl-phosphate (TMP) has recently shown an attractive self-extinguishing property in addition to an excellent charge-discharge performance. However, the microscopic understanding of its solid electrolyte interphase (SEI) layer remains an open question. In this Letter, the red moon (RM) method was used to investigate the molecular mechanism of SEI layer formation depending on lithium bis(fluorosulfonyl)amide (LiFSA) salt concentration in a TMP-based electrolyte and was able to reproduce successfully the experimental observations, i.e., the "bottom-up" formation mechanism with a thinner and denser SEI layer mainly based on salt reduction in the HC electrolyte. The results showed that a pure dense inorganic layer is formed in the HC electrolyte, which should considerably improve the SEI layer stability leading to a longer lifetime in charge-discharge performance. This new microscopic finding should provide an important guide in designing an effective nonflammable electrolyte to develop advanced, safe secondary batteries.
机译:除了优异的充放电性能之外,最近还示出了基于不易燃溶剂三甲基磷酸酯(TMP)的高度盐浓的(HC)电解质。然而,对其固体电解质间的显微镜理解仍然是一个敞开的问题。在这封信中,红月(RM)方法用于研究SEI层形成根据TMP基电解质中的锂双(氟磺酰基)盐浓度(LIFSA)盐浓度,并且能够成功再现实验观察结果,即“自下而上”形成机制,具有较薄和密度SEI层的主要基于HC电解质的盐还原。结果表明,在HC电解质中形成纯致密的无机层,其应显着提高SEI层稳定性,这导致充电 - 放电性能更长的寿命更长。这种新的显微镜发现应提供设计有效的不易燃电解质以开发先进的安全二次电池的重要指南。

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