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Embroidered Copper Microwire Current Collector for Improved Cycling Performance of Silicon Anodes in Lithium-Ion Batteries

机译:刺绣铜微线集电器可改善锂离子电池中硅阳极的循环性能

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摘要

Si holds great promise as an alloying anode material for Li-ion batteries with improved energy density because of its high theoretical specific capacity and favorable operation voltage range. However, the large volume expansion of Si during electrochemical reaction with Li and the associated adverse effects strongly limit its prospect for application. Here, we report on the use of three-dimensional instead of flat current collectors for high-capacity Si anodes in an attempt to mitigate the loss of electrical contact of active electrode regions as a result of structural disintegration with cycling. The current collectors were produced by technical embroidery and consist of interconnected Cu wires of diameter <150 µm. In comparison to Si/Li cells using a conventional Cu foil current collector, the embroidered microwire network-based cells show much enhanced capacity and reversibility due to a higher degree of tolerance to cycling.
机译:Si具有高的理论比容量和良好的工作电压范围,有望成为具有更高能量密度的锂离子电池合金阳极材料。但是,在与Li发生电化学反应过程中,Si的体积膨胀大以及相关的不利影响极大地限制了其应用前景。在这里,我们报告了在大容量Si阳极上使用三维而不是平面集电器的情况,以试图减轻由于结构分解和循环而导致的有源电极区域电接触损失。集电器是通过技术刺绣生产的,由直径小于150μm的互连铜线组成。与使用常规Cu箔集电器的Si / Li电池相比,基于刺绣微线网络的电池由于对循环的耐受性更高,因此容量和可逆性大大提高。

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