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Dual Protection of Sulfur by Carbon Nanospheres and Graphene Sheets for Lithium-Sulfur Batteries

机译:碳纳米球和石墨烯片对锂硫电池的硫的双重保护

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摘要

Well-confined elemental sulfur was implanted into a stacked block of carbon nanospheres and graphene sheets through a simple solution process to create a new type of composite cathode material for lithium-sulfur batteries. Transmission electron microscopy and elemental mapping analysis confirm that the as-prepared composite material consists of graphene-wrapped carbon nanospheres with sulfur uniformly distributed in between, where the carbon nanospheres act as the sulfur carriers. With this structural design, the graphene contributes to direct coverage of sulfur to inhibit the mobility of polysul-fides, whereas the carbon nanospheres undertake the role of carrying the sulfur into the carbon network. This composite achieves a high loading of sulfur (64.2 wt%) and gives a stable electrochemical performance with a maximum discharge capacity of 1394 mAhg~(-1) at a current rate of 0.1 C as well as excellent rate capability at 1 C and 2 C. The improved electrochemical properties of this composite material are attributed to the dual functions of the carbon components, which effectively restrain the sulfur inside the carbon nano-network for use in lithium-sulfur rechargeable batteries.
机译:通过一种简单的溶液处理方法,将约束良好的元素硫注入碳纳米球和石墨烯片的堆叠块中,以创建一种新型的锂硫电池复合阴极材料。透射电子显微镜和元素图谱分析证实,所制备的复合材料由包裹有石墨烯的碳纳米球组成,其中硫均匀分布在其中,其中碳纳米球充当硫载体。通过这种结构设计,石墨烯有助于直接覆盖硫,从而抑制多硫化物的迁移,而碳纳米球承担着将硫带入碳网络的作用。该复合材料可实现高硫含量(64.2 wt%),并具有稳定的电化学性能,在0.1 C的电流速率下最大放电容量为1394 mAhg〜(-1),并在1 C和2下具有出色的速率能力C.这种复合材料的改进的电化学性能归因于碳组分的双重功能,有效地限制了用于锂硫可充电电池的碳纳米网络内部的硫。

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