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TiO2(B)@carbon composite nanowires as anode for lithium ion batteries with enhanced reversible capacity and cyclic performance

机译:TiO2(B)@碳复合纳米线作为锂离子电池的负极,具有增强的可逆容量和循环性能

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摘要

Novel TiO2(B)@carbon composite nanowires were simply prepared by a two-step hydrothermal process with subsequent heat treatment in argon. The nanostructures exhibit the unique feature of having TiO2(B) encapsulated inside and an amorphous carbon layer coating the outside. The unique core/shell structure and chemical composition is likely to lead to perfect performance in many applications. In this paper, the results of Li-ion battery testing are presented to demonstrate the superior cyclic performance and rate capability of the TiO2(B)@carbon nanowires. The composite nanowires exhibit a high reversible capacity of 560 mAh g−1 after 100 cycles at the current density of 30 mA g−1, and excellent cycling stability and rate capability (200 mAh g−1 when cycled at the current density of 750 mA g−1), indicating that the composite is a promising anode candidate for Li-ion batteries.
机译:新型TiO2(B)@碳复合纳米线是通过两步水热法并随后在氩气中进行热处理而简单制备的。纳米结构展现出独特的特征:将TiO2(B)封装在内部,并在其外部覆盖无定形碳层。独特的核/壳结构和化学成分可能会在许多应用中带来完美的性能。本文介绍了锂离子电池测试的结果,以证明TiO2(B)@碳纳米线的优异循环性能和倍率性能。复合纳米线在30 mA g-1的电流密度下经过100次循环后显示出560 mAh g-1的高可逆容量,并具有出色的循环稳定性和速率能力(在750 mA的电流密度下循环时具有200 mAh g-1的循环能力) g-1),表明该复合材料是锂离子电池有希望的阳极候选材料。

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