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Facile synthesis of coaxial CNTs/MnOx-carbon hybrid nanofibers and their greatly enhanced lithium storage performance

机译:同轴CNT / MnOx-碳杂化纳米纤维的简便合成及其大大提高的锂存储性能

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摘要

Carbon nanotubes (CNTs)/MnOx-Carbon hybrid nanofibers have been successfully synthesized by the combination of a liquid chemical redox reaction (LCRR) and a subsequent carbonization heat treatment. The nanostructures exhibit a unique one-dimensional core/shell architecture, with one-dimensional CNTs encapsulated inside and a MnOx-carbon composite nanoparticle layer on the outside. The particular porous characteristics with many meso/micro holes/pores, the highly conductive one-dimensional CNT core, as well as the encapsulating carbon matrix on the outside of the MnOx nanoparticles, lead to excellent electrochemical performance of the electrode. The CNTs/MnOx-Carbon hybrid nanofibers exhibit a high initial reversible capacity of 762.9 mAh-1, a high reversible specific capacity of 560.5 mAh-1 after 100 cycles, and excellent cycling stability and rate capability, with specific capacity of 396.2 mAh-1 when cycled at the current density of 1000 mA-1, indicating that the CNTs/MnOx-Carbon hybrid nanofibers are a promising anode candidate for Li-ion batteries.
机译:碳纳米管(CNTs)/ MnOx-碳杂化纳米纤维已经通过液相化学氧化还原反应(LCRR)和随后的碳化热处理相结合而成功合成。纳米结构展现出独特的一维核/壳结构,一维CNT被封装在内部,而MnOx-碳复合纳米颗粒层在外部。具有许多介孔/微孔/孔,高导电性的一维CNT核以及MnOx纳米颗粒外侧的封装碳基质的特殊多孔特性导致电极具有出色的电化学性能。 CNT / MnOx-碳杂化纳米纤维表现出高的初始可逆容量762.9 mAh-1、100次循环后的高可逆比容量560.5 mAh-1,出色的循环稳定性和倍率性能,比容量为396.2 mAh-1当以1000 mA-1的电流密度循环时,表明CNT / MnOx-碳杂化纳米纤维是锂离子电池的有希望的阳极候选材料。

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