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首页> 外文期刊>Nanoscale >Vanadium based carbide-oxide heterogeneous V2O5@V2C nanotube arrays for high-rate and long-life lithium-sulfur batteries
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Vanadium based carbide-oxide heterogeneous V2O5@V2C nanotube arrays for high-rate and long-life lithium-sulfur batteries

机译:基于钒carbide-oxide异构V2O5@V2C高利率和纳米管阵列长寿命锂硫电池

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Due to their ultra-high theoretical energy density, low cost, and environmental friendliness, lithium-sulfur batteries have become a potentially strong competitor for next-generation energy storage devices. The search for a host material that can effectively anchor sulfur to a cathode to solve the adverse effects of the shuttle effect on batteries has become a research hotspot in the academic world. Here, we propose a three-dimensional heterostructure of V(2)O(5)nanotube arrays vertically grown on V2C-MXenes as a sulfur-supporting host material for the cathode of lithium-sulfur batteries. Through first-principles calculations, we found that V2O5@V2C exhibits an extreme adsorption capacity for polysulfides. Besides, thanks to the excellent catalytic performance of V(2)O(5)for oxidation reactions, the conversion reaction potential of polysulfides to Li2S and Li(2)S(2)is significantly reduced, and the shuttle effect of lithium-sulfur batteries is effectively suppressed. Also, the larger specific surface area and tubular structure of the composite host material can increase the sulfur loading of the cathode while ensuring the stability of the electrode structure. The V2O5@V2C/S electrode exhibits higher initial capacity (1173 mA h g(-1)at 0.2C), longer cycle life (1000 cycles with 0.047% decay per period), and higher sulfur loading (8.4 mg cm(-2)). We believe that this work can provide a reference for the design of cathode host materials for lithium-sulfur batteries with long cycle life.
机译:由于其超高的理论能量密度,低成本和环境友好,锂硫电池成为一个潜在的强大的竞争对手新一代能源存储设备。寻找大量材料,可以有效地锚定硫阴极解决不利航天飞机效应对电池的影响成为学术界的一个研究热点。在这里,我们提出一个三维的异质结构的V (2) O(5)纳米管阵列垂直生长在V2C-MXenes作为sulfur-supporting主机阴极材料锂硫电池的。采用基于计算,我们发现V2O5@V2C展览一个极端的吸附能力多硫化合物。优良的催化性能的V (2) O (5)氧化反应,转换反应潜在的聚硫Li2S和李(2)(2)显著降低,航天飞机的影响锂硫电池是有效的抑制。区和管状结构的复合主机材料可以提高硫的加载阴极的同时确保稳定电极结构。马展品更高的初始容量(1173 hg(1)在0.2摄氏度),长循环寿命(1000次每周期衰变为0.047%),和更高的硫加载(8.4毫克厘米(2))。工作可以为设计提供参考阴极材料锂硫电池循环寿命长。

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