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Smart construction of three-dimensional hierarchical tubular transition metal oxide core/shell heterostructures with high-capacity and long-cycle-life lithium storage

机译:具有高容量和长寿命锂存储的三维分层管状过渡金属氧化物核/壳异质结构的智能构造

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In order to realize new high performance electrodes for lithium-ion batteries (LIBs), the careful design of nanoarchitectures and effective hybridization of active materials are research areas of great interest. Here, we present a simple and highly controllable two-step fabrication technique, followed by a heat treatment process, for the large-scale in situ growth of 3D hierarchical tubular CuO/other metal oxides core/shell heterostructure arrays that are directly grown on Cu foam. As a proof-of-concept demonstration of the application of such 3D hierarchical tubular heterostructure arrays, the prepared tubular CuO/CoO core/shell arrays are investigated as binder- and conductive agent-free anodes for LIBs, exhibiting an impressive capacity of 1364 mAh g(-1) at a current density of 100 mA g(-1) after 50 cycles and maintaining 1140 mAh g after 1000 cycles at 1.0 A g(-1). This excellent electrochemical performance can be attributed to the unique hollow porous architecture consisting of 3D hierarchical tubular core/shell architectures, and the effective hybridization of two electrochemically cohesive active materials. Our work shows that this material has great potential for high-energy and high-power energy storage applications. (C) 2015 Elsevier Ltd. All rights reserved.
机译:为了实现用于锂离子电池(LIB)的新型高性能电极,纳米结构的精心设计和活性材料的有效杂交是引起人们极大兴趣的研究领域。在这里,我们提出了一种简单且高度可控的两步制造技术,然后进行热处理工艺,以用于大规模原位生长在Cu上直接生长的3D分层管状CuO /其他金属氧化物核/壳异质结构阵列泡沫。作为此类3D分层管状异质结构阵列应用的概念验证,研究了制备的管状CuO / CoO核/壳阵列作为LIB的无粘结剂和无导电剂的阳极,其惊人的容量为1364 mAh 50个循环后电流密度为100 mA g(-1)时的g(-1),经过1000次循环后在1.0 A g(-1)下保持1140 mAh g。这种出色的电化学性能可归因于由3D分层管状核/壳结构组成的独特的中空多孔结构,以及两种电化学粘结活性材料的有效杂交。我们的工作表明,这种材料在高能量和高功率储能应用中具有巨大的潜力。 (C)2015 Elsevier Ltd.保留所有权利。

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