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Interfaces Between Cathode and Electrolyte in Solid State Lithium Batteries: Challenges and Perspectives

机译:固态锂电池中阴极和电解质之间的界面:挑战和前景

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Solid state lithium batteries are widely accepted as promising candidates for next generation of various energy storage devices with the probability to realize improved energy density and superior safety performances. However, the interface between electrode and solid electrolyte remain a key issue that hinders practical development of solid state lithium batteries. In this review, we specifically focus on the interface between solid electrolytes and prevailing cathodes. The basic principles of interface layer formation are summarized and three kinds of interface layers can be categorized. For typical solid state lithium batteries, a most common and daunting challenge is to achieve and sustain intimate solid-solid contact. Meanwhile, different specific issues occur on various types of solid electrolytes, depending on the intrinsic properties of adjacent solid components. Our discussion mostly involves following electrolytes, including solid polymer electrolyte, inorganic solid oxide and sulfide electrolytes as well as composite electrolytes. The effective strategies to overcome the interface instabilities are also summarized. In order to clarify interfacial behaviors fundamentally, advanced characterization techniques with time and atomic-scale resolution are required to gain more insights from different perspectives. And recent progresses achieved from advanced characterization are also reviewed here. We highlight that the cooperative characterization of diverse advanced characterization techniques is necessary to gain the final clarification of interface behavior, and stress that the combination of diverse interfacial modification strategies is required to build up decent cathode-electrolyte interface for superior solid state lithium batteries.
机译:固态锂电池被公认为是下一代各种储能设备的有前途的候选者,有可能实现提高的能量密度和出色的安全性能。然而,电极与固体电解质之间的界面仍然是阻碍固态锂电池实际开发的关键问题。在这篇综述中,我们特别关注固体电解质和主要阴极之间的界面。总结了界面层形成的基本原理,可以对三种界面层进行分类。对于典型的固态锂电池,最普遍且艰巨的挑战是实现并维持紧密的固-固接触。同时,取决于相邻固体组分的固有性质,在各种类型的固体电解质上发生不同的具体问题。我们的讨论主要涉及以下电解质,包括固体聚合物电解质,无机固体氧化物和硫化物电解质以及复合电解质。还总结了克服接口不稳定性的有效策略。为了从根本上阐明界面行为,需要具有时间和原子尺度分辨率的先进表征技术,以从不同的角度获得更多的见解。并在此还回顾了从高级表征获得的最新进展。我们着重指出,必须对各种先进的表征技术进行协同表征,才能最终弄清界面行为,并强调必须结合多种界面修饰策略,才能为高级固态锂电池建立良好的阴极-电解质界面。

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