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首页> 外文期刊>Journal of Alloys and Compounds: An Interdisciplinary Journal of Materials Science and Solid-state Chemistry and Physics >Ultrathin NiO confined within hollow carbon sphere for efficient electrochemical energy storage
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Ultrathin NiO confined within hollow carbon sphere for efficient electrochemical energy storage

机译:超薄NIO限制在中空碳球内,用于高效电化学储能

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In this contribution, we present a facile encapsulating process for controlled synthesis of a hybrid structure of ultrathin NiO crystals confined growth on the interior shells of hollow carbon sphere (NiO@HCS). In this method, a complete HCS with high porosity and good electrical conductivity can selectively confine the growth of NiO directly to its inner carbon shell. The as-prepared NiO@HCS offers advantages such as high surface area, great electrical conductivity and suitable pore size distribution. Besides, the small number of metal oxide nanocrystals inside HCS can provide more efficient electrochemical reaction within NiO compared with bulk NiO with large size. When used for a lithium-ion battery, NiO@HCS possesses the high capacity and superior rate capability as an anode material. Owing to the strong interaction of HCS and NiO crystals, NiO@HCS exhibits excellent cycle stability at a high current density. Furthermore, NiO@HCS also shows good capacitive performance in a symmetric supercapacitor device. (C) 2019 Elsevier B.V. All rights reserved.
机译:在这一贡献中,我们介绍了用于控制合成的超薄NIO晶体的杂化结构的体内封装方法被限制在中空碳球的内部壳(NIO @ HCS)上的杂交生长。在该方法中,具有高孔隙率和良好导电性的完整HCs可以选择性地将NiO的生长直接限制在其内碳壳中。 AS制备的NIO @ HCS提供了高表面积,电导率大和合适的孔径分布等优点。此外,与具有大尺寸大的散装NIO相比,HCS内的少量金属氧化物纳米晶体可以在NIO内提供更有效的电化学反应。当用于锂离子电池时,NIO @ HCS具有高容量和优异的速率能力作为阳极材料。由于HCS和NIO晶体的强相互作用,NIO @ HCS在高电流密度下表现出优异的循环稳定性。此外,NIO @ HCS还在对称超电容器装置中显示出良好的电容性能。 (c)2019 Elsevier B.v.保留所有权利。

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