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New approach for enhancing electrical conductivity of electrodeposited Si-based anode material for Li secondary batteries: Self-incorporation of nano Cu metal in Si-O-C composite

机译:增强锂二次电池电沉积硅基负极材料导电性的新方法:将纳米铜金属自掺入Si-O-C复合材料中

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The poor electrical conductivity of Si-based anode materials is a critical challenge for the development of high-performance Li secondary batteries. We propose a new approach for enhancing the electrical conductivity of an electrodeposited Si-O-C composite anode via self-incorporation of nano Cu metal (n-Cu) using a facile and inexpensive electrochemical synthetic method. The Si-O-C composite with n-Cu (Cu/Si-O-C composite) shows stable cycle performance with a fairly high specific capacity. Since Cu precursor ions for the electrodeposition of n-Cu are directly dissolved from a Cu substrate used as the current collector for the anode, electrical conducting additives that causes increase in the weight and volume of the electrode are not unnecessarily supplemented. In the synthesis process, the n-Cu metal and Si-O-C composite are electrodeposited simultaneously. The n-Cu/Si-O-C composite anode results in improved electrochemical performance, including enhancement of areal and specific capacity; coulombic efficiency; and rate capability. Electrochemical impedance spectroscopy suggests that such improvements in performance are due to the enhanced electrical conductivity resulting from the conductive network of the incorporated n-Cu. Moreover, the electrical conductive properties of the incorporated n-Cu suppress electrochemical degradation of the n-Cu/Si-O-C composite anode. (C) 2016 Elsevier Ltd. All rights reserved.
机译:硅基负极材料的导电性差是高性能锂二次电池开发的关键挑战。我们提出了一种新的方法,可通过一种便捷而廉价的电化学合成方法,通过自掺纳米碳铜(n-Cu)来增强电沉积Si-O-C复合阳极的电导率。具有n-Cu的Si-O-C复合材料(Cu / Si-O-C复合材料)具有相当高的比容量,显示出稳定的循环性能。由于用于n-Cu电沉积的Cu前体离子直接从用作阳极集电体的Cu基材上溶解,因此不需要添加导致电极重量和体积增加的导电添加剂。在合成过程中,同时电沉积n-Cu金属和Si-O-C复合材料。 n-Cu / Si-O-C复合阳极可改善电化学性能,包括提高面积和比容量;库仑效率和评分能力。电化学阻抗谱表明,这种性能的提高归因于所掺入的n-Cu的导电网络导致的电导率提高。而且,掺入的n-Cu的导电性能抑制了n-Cu / Si-O-C复合阳极的电化学降解。 (C)2016 Elsevier Ltd.保留所有权利。

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