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A review of the electrochemical performance of alloy anodes for lithium-ion batteries

机译:锂离子电池合金负极的电化学性能综述

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Alloy anodes are promising anode materials for lithium-ion batteries due to their high-energy capacity and safety characteristics. However, the commercial use of alloy anodes has been hindered to date by their low cycle life and high initial capacity loss. This review highlights the recent progress in improving and understanding the electrochemical performance of various alloy anodes. The approaches used for performance improvement are summarized, and the causes of first-cycle irreversible capacity loss are discussed. The capacity retentions and irreversible capacity losses of various alloy anodes are compared. Several alloy anodes exhibited excellent cycle life (up to 300 cycles) with high initial coulombic efficiency (80-90%) and large reversible capacity (500-700 mAh g~(-1)).
机译:合金阳极由于其高能量容量和安全特性而成为锂离子电池的有希望的阳极材料。然而,迄今为止,由于合金阳极的低循环寿命和高初始容量损失,其商业应用受到阻碍。这篇综述强调了在改善和理解各种合金阳极的电化学性能方面的最新进展。总结了用于性能改善的方法,并讨论了第一周期不可逆容量损失的原因。比较了各种合金阳极的容量保持率和不可逆容量损失。几种合金阳极具有出色的循环寿命(最多300个循环),高的初始库仑效率(80-90%)和大的可逆容量(500-700 mAh g〜(-1))。

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