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首页> 外文期刊>Angewandte Chemie >An Artificial Lithium Protective Layer that Enables the Use of Acetonitrile-Based Electrolytes in Lithium Metal Batteries
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An Artificial Lithium Protective Layer that Enables the Use of Acetonitrile-Based Electrolytes in Lithium Metal Batteries

机译:一种人造锂保护层,可以在锂金属电池中使用乙腈基电解质

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The resurgence of the lithium metal battery requires innovations in technology, including the use of non-conventional liquid electrolytes. The inherent electrochemical potential of lithium metal (-3.04V vs. SHE) inevitably limits its use in many solvents, such as acetonitrile, which could provide electrolytes with increased conductivity. The aim of this work is to produce an artificial passivation layer at the lithium metal/electrolyte interface that is electrochemically stable in acetonitrile-based electrolytes. To produce such a stable interface, the lithium metal was immersed in fluoroethylene carbonate (FEC) to generate a passivation layer via the spontaneous decomposition of the solvent. With this passivation layer, the chemical stability of lithium metal is shown for the first time in 1m LiPF6 in acetonitrile.
机译:锂金属电池的复兴需要技术的创新,包括使用非常规液体电解质。 锂金属的固有电化学潜力(-3.04V与她)不可避免地限制其在许多溶剂中的用途,例如乙腈,其可以提供具有增加的导电性的电解质。 这项工作的目的是在锂金属/电解质界面处生产人工钝化层,其在乙腈基电解质中电化学稳定。 为了生产这种稳定的界面,将锂金属浸入氟碳酯(FEC)中以通过溶剂的自发分解产生钝化层。 利用这种钝化层,锂金属的化学稳定性在乙腈中的1M LiPF6中首次示出。

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