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首页> 外文期刊>Nanoscale >Free-standing nanostructured vanadium pentoxide films for metal-ion batteries
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Free-standing nanostructured vanadium pentoxide films for metal-ion batteries

机译:独立的纳米五氧化二钒电影对金属离子电池

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摘要

Owing to their unique layer structure, high aspect ratio and intercalation capability, vanadium pentoxide (V2O5) nanofibers are close-to-ideal building blocks for high performance electrodes for metal-ion batteries. However, thus far investigated electrodes composed of V2O5 nanofibers mostly contain binders and conductive agents, which reduce the electrodes' gravimetric capacity. Here we demonstrate self-supporting V2O5 nanofiber-based films that combine high mechanical flexibility and stability with good electrical conductivity. This has been achieved by suitable adjustment of the nanofiber length, in combination with a suitable humidity controlled post-treatment, to ensure an effective nanofiber interconnection and aging of the films. The optimization of these two parameters allows for an impressive 81%, 184%, and 281% enhancement in Young's modulus, tensile strength and toughness respectively, along with an increase of electrical conductivity by up to 165%. Such films can reach storage capacities of up to 150 mA h g(-1) without the support of conductive agents and binders. Our findings provide fundamental design guidelines for advanced binder-free electrode materials, which unite high specific storage capacity, excellent mechanical stability and good intrinsic electrical conductivity - the key to technologically advanced battery performance and lifetime.
机译:由于他们独特的层状结构,高的方面比和设置功能,钒五氧化二(V2O5)纳米纤维是接近理想高性能电极的构建块对金属离子电池。研究了电极V2O5组成纳米纤维主要包含绑定和导电代理,减少电极的重量能力。V2O5 nanofiber-based电影结合高机械的灵活性和稳定性好导电性。通过合适的纳米纤维长度的调整,结合一个合适的湿度治疗后的控制,以确保一个有效的纳米纤维互连和衰老的电影。这两个参数允许的优化一个令人印象深刻的81%,184%,和281%的提高杨氏模量、抗拉强度和随着增加韧性分别导电率达165%。马能达到存储容量高达150 hg(1)没有导电剂的支持和绑定。设计先进的binder-free指南电极材料,结合特定的高存储容量,良好的机械稳定性和良好的内在电导率-先进的电池的关键性能和寿命。

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