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Multifunctional artificial solid electrolyte interphase layer for lithium metal anode in carbonate electrolyte

机译:碳酸锂电解质锂金属阳极的多功能人工固体电解质相互作用

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摘要

The practical application of Li metal in rechargeable batteries is seriously hindered by its irregular dendrite growth resulting in inferior cycling efficiency and poor safety. Herein, a multifunctional artificial solid electrolyte interphase (SEI) layer is constructed on lithium surface via chemical reactions between lithium metals and allyl glycidyl ether (AGE). The protected layer is mainly composed of cross-linked polyethylene chains and polyethylene oxide moieties, which significantly improved the cycling performance of Li/Li symmetric cells and high voltage LiINCM523 (4.5 V) cells in the electrolyte of 1 M LiPF6 in EC/DMC/EMC (1:1:1, by wt.). Electrochemical impedance spectroscopy (EIS) and scanning electron microscope (SEM) measurements confirm that the protected layer could reduce the morphology changes and suppress the parasitic reactions of lithium anodes effectively. A probable mechanism based on polymerization and cross-linking reactions of AGE is proposed for the formation of artificial SEI layer. These results demonstrated that the multifunctional artificial solid electrolyte interphase (SEI) layer have considerable potential application to protect lithium metal anode.
机译:Li金属在可充电电池中的实际应用受到其不规则的树突生长的严重阻碍,导致循环效率较差,安全性差。在此,通过锂金属和烯丙基缩水甘油醚(年龄)之间的化学反应在锂表面上构建多功能人工固体电解质差异(SEI)层。受保护层主要由交联聚乙烯链和聚环氧乙烷部分组成,可显着改善EC / DMC的电解质中Li / Li对称电池和高压LiIlmM523(4.5V)细胞的循环性能/ EC / DMC / EMC(1:1:1,WT)。电化学阻抗光谱(EIS)和扫描电子显微镜(SEM)测量确认,受保护层可以减少形态变化,并有效地抑制锂阳极的寄生反应。提出了一种基于聚合和交联反应的可能机制,用于形成人造SEI层。这些结果表明,多功能人工固体电解质相互作用(SEI)层具有相当大的潜在应用来保护锂金属阳极。

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