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Metallic Sn-Based Anode Materials: Application in High-Performance Lithium-Ion and Sodium-Ion Batteries

机译:金属锡基负极材料:在高性能锂离子和钠离子电池中的应用

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Abstract With the fast-growing demand for green and safe energy sources, rechargeable ion batteries have gradually occupied the major current market of energy storage devices due to their advantages of high capacities, long cycling life, superior rate ability, and so on. Metallic Sn-based anodes are perceived as one of the most promising alternatives to the conventional graphite anode and have attracted great attention due to the high theoretical capacities of Sn in both lithium-ion batteries (LIBs) (994 mA h g ?¢????1 ) and sodium-ion batteries (847 mA h g ?¢????1 ). Though Sony has used Sn?¢????Co?¢????C nanocomposites as its commercial LIB anodes, to develop even better batteries using metallic Sn-based anodes there are still two main obstacles that must be overcome: poor cycling stability and low coulombic efficiency. In this review, the latest and most outstanding developments in metallic Sn-based anodes for LIBs and SIBs are summarized. And it covers the modification strategies including size control, alloying, and structure design to effectually improve the electrochemical properties. The superiorities and limitations are analyzed and discussed, aiming to provide an in-depth understanding of the theoretical works and practical developments of metallic Sn-based anode materials.
机译:摘要随着对绿色安全能源的需求快速增长,可再充电离子电池具有容量大,循环寿命长,倍率能力强等优点,逐渐占领了当前主要的储能设备市场。金属锡基阳极被认为是常规石墨阳极的最有希望的替代品之一,由于两种锂离子电池(LIB)中锡的理论容量很高(994 mA hg? (1)和钠离子电池(847 mA hg(1))。尽管索尼已将Sn?Co?Co?C纳米复合材料用作其商用LIB阳极,但要开发出使用金属Sn基阳极的更好的电池,仍然必须克服两个主要障碍:循环不良稳定性和库仑效率低。在这篇综述中,总结了用于LIB和SIB的金属锡基阳极的最新和最杰出的发展。并且涵盖了包括尺寸控制,合金化和结构设计在内的各种修饰策略,以有效地改善电化学性能。分析和讨论了优缺点,旨在深入了解金属锡基负极材料的理论工作和实际发展。

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