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首页> 外文期刊>Journal of power sources >Microstructure And Electrochemical Performance Of Thin Film Anodes For Lithium Ion Batteries In Immiscible Al-sn System
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Microstructure And Electrochemical Performance Of Thin Film Anodes For Lithium Ion Batteries In Immiscible Al-sn System

机译:不溶混Al-sn体系中锂离子电池薄膜阳极的微观结构和电化学性能

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摘要

The immiscible Al-Sn alloy thin films prepared by electron-beam deposition were first investigated as possible negative electrodes for lithium ion batteries. In the complex structure of the Al-Sn thin films, tiny Sn particles dispersed homogeneously in the Al active matrix. Their electrochemical characteristics were tested in comparison with the pure Al and Sn films. Cyclic voltammetry results indicated that the Li~+ -transport rates in these Al-Sn alloy films were significantly enhanced. Charge-discharge tests showed that the Al-Sn alloy film anodes had good cycle performance. The electrode with high Al content (Al-33 wt%Sn) delivered a high initial discharge capacity of 752 mAh g~(-1) while the electrode with high Sn content (Al-64 wt%Sn) had better cycleability with a stable specific capacity of about 300 mAh g~(-1) under 0.8 C rate. The good performance of these immiscible Al-Sn alloy film anodes was attributed to their unique microstructure. The mechanism of lithiation and delithiation reaction had been proposed based on cyclic voltammograms and impedance response of the Al-Sn alloy thin film electrodes. Our preliminary results demonstrate that the Al-Sn immiscible alloy is a potential candidate negative material for Li-ion battery.
机译:首先研究了通过电子束沉积制备的不互溶的Al-Sn合金薄膜作为锂离子电池可能的负极。在Al-Sn薄膜的复杂结构中,微小的Sn颗粒均匀地分散在Al活性基质中。与纯Al和Sn膜相比,测试了它们的电化学特性。循环伏安法结果表明,这些Al-Sn合金膜中的Li〜+传输速率得到了显着提高。充放电试验表明,Al-Sn合金薄膜阳极具有良好的循环性能。高铝含量的电极(Al-33 wt%Sn)的初始放电容量为752 mAh g〜(-1),高锡含量的电极(Al-64 wt%Sn)具有更好的循环性能和稳定的在0.8 C速率下的比容量约为300 mAh g〜(-1)。这些不混溶的Al-Sn合金薄膜阳极的良好性能归因于其独特的微观结构。基于循环伏安图和Al-Sn合金薄膜电极的阻抗响应,提出了锂化和脱锂反应的机理。我们的初步结果表明,Al-Sn不混溶合金是锂离子电池的潜在候选负极材料。

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