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Vanadium Carbide Based Composite for High Performance Oxygen Reduction Reaction and Lithium Ion Batter

机译:基于碳化物钒的复合材料,用于高性能还原反应和锂离子面糊

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摘要

The fabrication of novel multifunctional nanohybrids of vanadium carbide nanoparticles decorated reduced graphene oxide (RGO) is presented. The resulting composite exhibits large specific surface area and enhanced electrical conductivity, which can effectively increase the number of active sites and facilitate the charge transport. As a result, the V8C7/RGO electrode demonstrates comparable oxygen reduction reaction (ORR) catalytic activity with commercial Pt/C in terms of high electron transfer number, high current density and good durability. In particular, the onset potential of the as-prepared sample is only about 50 mV lower than that of the Pt/C catalyst. When the V8C7/RGO was evaluated as anode material for lithium ion batteries (LIBs), the V8C7/RGO nanocomposite shows a high reversible specific capacity (1~(st)-cycle charge capacity of 995.8 mAh g~(-1) at 0.1 A g~(-1)), a long cycling life (specific capacity of 349.6 mAh g~(-1) after 400 cycles at 10 A g~(-1)), and an excellent rate performance (e.g. specific capacity of 277.2 mAh g~(-1) at 10 A g~(-1)).
机译:呈现了碳化物碳化物纳米颗粒的新型多功能纳米杂化剂的制造。所得的复合材料表现出较大的特定表面积和增强的电导率,这可以有效地增加活性位点的数量并促进电荷运输。结果,在高电子传递数,高电流密度和良好的耐用性方面,V8C7/RGO电极与商用PT/C的氧气还原反应(ORR)相当。特别是,预先准备的样品的开始电位仅比PT/C催化剂低约50 mV。当将V8C7/RGO评估为锂离子电池(LIB)的阳极材料时,V8C7/RGO纳米复合材料显示出高可逆的特异性容量(1〜(ST)循环电荷能力为995.8 mAh G〜(-1)0.1) a g〜(-1)),长骑自行车寿命(在10 a g〜(-1)400循环后的特定容量为349.6 mAh g〜(-1)和出色的速率性能(例如,特定能力为277.2 mah g〜(-1)在10 a g〜(-1))。

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