电解质
相间
化学
电极
电阻式触摸屏
电池(电)
离子
化学工程
化学物理
快离子导体
电气工程
热力学
有机化学
物理化学
生物
物理
工程类
功率(物理)
遗传学
作者
Martin R. Busche,Thomas Drossel,Thomas Leichtweiß,Dominik A. Weber,Mareike Falk,Meike Schneider,Maria‐Louisa Reich,Heino Sommer,Philipp Adelhelm,Jürgen Janek
出处
期刊:Nature Chemistry
[Nature Portfolio]
日期:2016-03-14
卷期号:8 (5): 426-434
被引量:393
摘要
The discharging and charging of batteries require ion transfer across phase boundaries. In conventional lithium-ion batteries, Li(+) ions have to cross the liquid electrolyte and only need to pass the electrode interfaces. Future high-energy batteries may need to work as hybrids, and so serially combine a liquid electrolyte and a solid electrolyte to suppress unwanted redox shuttles. This adds new interfaces that might significantly decrease the cycling-rate capability. Here we show that the interface between a typical fast-ion-conducting solid electrolyte and a conventional liquid electrolyte is chemically unstable and forms a resistive solid-liquid electrolyte interphase (SLEI). Insights into the kinetics of this new type of interphase are obtained by impedance studies of a two-chamber cell. The chemistry of the SLEI, its growth with time and the influence of water impurities are examined by state-of-the-art surface analysis and depth profiling.
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