首页> 外文期刊>Advanced Materials >A 3D Nitrogen-Doped Graphene/TiN Nanowires Composite as a Strong Polysulfide Anchor for Lithium-Sulfur Batteries with Enhanced Rate Performance and High Areal Capacity
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A 3D Nitrogen-Doped Graphene/TiN Nanowires Composite as a Strong Polysulfide Anchor for Lithium-Sulfur Batteries with Enhanced Rate Performance and High Areal Capacity

机译:3D氮掺杂石墨烯/ TiN纳米线复合材料,作为锂硫电池的强多硫化锚,具有增强的速率性能和高的区域容量

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摘要

Lithium-sulfur (Li-S) batteries have attracted remarkable attention due to their high theoretical capacity of 1675 mAh g(-1), rich resources, inexpensiveness, and environmental friendliness. However, the practical application of the Li-S battery is hindered by the shuttling of soluble lithium polysulfides (LiPSs) and slow redox reactions. Herein, a 3D nitrogen-doped graphene/titanium nitride nanowires (3DNG/TiN) composite is reported as a freestanding electrode for Li-S batteries. The highly porous conductive graphene network provides efficient pathways for both electrons and ions. TiN nanowires attached on the graphene sheets have a strong chemical anchor effect on the polysulfides, which is proved by the superior performance and by density functional theory calculations. As a result, the 3DNG/TiN cathode exhibits an initial capacity of 1510 mAh g(-1) and the capacity remains at 1267 mAh g(-1) after 100 cycles at 0.5 C. Even at 5 C, a capacity of 676 mAh g(-1) is reached. With a high sulfur loading of 9.6 mg cm(-2), the 3DNG cathode achieves an ultrahigh areal capacity of 12.0 mAh cm(-2) at a high current density of 8.03 mA cm(-2). This proposed unique structure gives a bright prospect in that high energy density and high power density can be achieved simultaneously for Li-S batteries.
机译:锂硫(Li-S)电池由于其1675 mAh g(-1)的高理论容量,丰富的资源,廉价和对环境友好而备受关注。但是,可溶性锂多硫化物(LiPS)的穿梭和缓慢的氧化还原反应阻碍了锂硫电池的实际应用。在本文中,报道了3D氮掺杂石墨烯/氮化钛纳米线(3DNG / TiN)复合材料作为Li-S电池的自立电极。高度多孔的导电石墨烯网络为电子和离子提供了有效的途径。附着在石墨烯片上的TiN纳米线对多硫化物具有很强的化学锚定作用,这由优异的性能和密度泛函理论计算证明。结果,3DNG / TiN阴极的初始容量为1510 mAh g(-1),在0.5 C下循环100次后,容量仍保持在1267 mAh g(-1)。即使在5 C下,容量仍为676 mAh达到g(-1)。在9.6 mg cm(-2)的高硫负载下,3DNG阴极在8.03 mA cm(-2)的高电流密度下实现了12.0 mAh cm(-2)的超高面积容量。所提出的独特结构具有广阔的前景,因为对于Li-S电池,可以同时实现高能量密度和高功率密度。

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