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Facile Synthesis of Hierarchical Networks Composed of Highly Interconnected V2O5 Nanosheets Assembled on Carbon Nanotubes and Their Superior Lithium Storage Properties

机译:碳纳米管上组装的高度互连的V2O5纳米片组成的分层网络的简便合成及其优越的锂存储性能

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摘要

Hierarchical networks with highly interconnected V2O5 nanosheets (NSs) anchored on skeletons of carbon nanotubes (CNTs) are prepared by a facile hydro-thermal treatment and a following calcination for the first time. Benefiting from these unique structural features, the as-prepared CNT@V2O5 material shows dramatically excellent electrochemical performance with remarkable long cyclability (137-116 mA h g~(-1) after 400 cycles) at various high rates (20 C to 30 C) and very good rate capability for highly reversible lithium storage. The excellent electrochemical performance suggests its promising use as a cathode material for future lithium-ion batteries.
机译:首次通过便捷的水热处理和随后的煅烧制备了锚固在碳纳米管(CNT)骨架上的具有高度互连的V2O5纳米片(NS)的分层网络。得益于这些独特的结构特征,所制得的CNT @ V2O5材料在不同的高速率(20 C至30 C)下显示出显着优异的电化学性能,并具有出色的长循环能力(400次循环后137-116 mA hg〜(-1))。以及极高的速率能力,用于高度可逆的锂存储。出色的电化学性能表明其有望用作未来锂离子电池的正极材料。

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