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Waste glass microfiber filter-derived fabrication of fibrous yolk-shell structured silicon/carbon composite freestanding electrodes for lithium-ion battery anodes

机译:锂离子电池阳极的纤维蛋白纤维壳结构硅/碳复合材料独立电极废纸微纤维滤光片制造

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摘要

Si is regarded as the most promising anode material for lithium-ion batteries owing to its high theoretical capacity and low working voltage. Waste glass microfiber filters (GFs) can be an optimal silica resource for nanostructured Si synthesis because they do not require crushing or acid leaching procedures, which are essential for other silica resources. In this study, benefiting from the original filter shape, fibrous yolk-shell structured Si/carbon composite freestanding electrodes are fabricated via magnesiothermic reduction (MgR) and carbon coating processes using GFs not only as the silica precursor for MgR but also as the hard template for carbon coating. The carbon shell acts as a conductive framework for the freestanding electrodes and encapsulates the Si nanoparticles (Si NPs) inside the shell with a void space. The freestanding electrodes exhibit good cycling performance and a high areal capacity of 2.2 mA h cm(-2) at the 150th cycle because of the yolk-shell structure, which accommodates the volume expansion of the Si NPs.
机译:由于其高理论能力和低工作电压,Si被视为锂离子电池最有前途的阳极材料。废玻璃微纤维过滤器(GFS)可以是纳米结构Si合成的最佳二氧化硅资源,因为它们不需要破碎或酸浸出程序,这对于其他二氧化硅资源至关重要。在该研究中,受益于原始滤光片形状,纤维蛋白壳结构Si /碳复合材料独立电极通过镁热还原(MGR)和碳涂层工艺制造,不仅是MGR的二氧化硅前体,而且是硬模板用于碳涂层。碳壳用作独立电极的导电框架,并用空隙空间封装壳体内的Si纳米颗粒(Si NP)。由于蛋白质壳结构,自由控制电极在第150周期中表现出良好的循环性能和2.2mA H cm(-2)的高度的容量,其适应Si NP的体积膨胀。

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