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Three-dimensional hierarchical ZnCo2O4 flower-like microspheres assembled from porous nanosheets: Hydrothermal synthesis and electrochemical properties

机译:由多孔纳米片组装的三维分层ZnCo2O4花状微球:水热合成和电化学性质

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In this work, three-dimensional hierarchical ZnCo2O4 flower-like microspheres have been synthesized on a large scale via a facile and economical citrate-mediated hydrothermal method followed by an annealing process in air. The as-synthesized ZnCo2O4 flower-like microspheres are constructed by numerous interweaving porous nanosheets. According to the experimental results, a formation mechanism involving the assembly of the nanosheets from nanoparticles into flower-like microsphere is proposed. As a virtue of their beneficial structural features, the ZnCo2O4 flower-like microspheres exhibit a high lithium storage capacity and excellent cycling stability (1136 mA h g(-1) at 100 mA g(-1) after 50 cycles). This remarkable electrochemical performance can be ascribed to the hierarchical structure and porous structures in the nanosheets, which effectively increases the contact area between the active materials and the electrolyte, shortening the Li+ diffusion pathway and buffering the volume variation during cycling. (C) 2015 Elsevier Ltd and Techna Group S.r.l. All rights reserved.
机译:在这项工作中,通过一种简便且经济的柠檬酸盐介导的水热方法,然后在空气中进行退火工艺,大规模合成了三维分层的ZnCo2O4花状微球。合成后的ZnCo2O4花状微球是由大量交织的多孔纳米片构成的。根据实验结果,提出了一种将纳米片由纳米颗粒组装成花状微球的形成机理。凭借其有益的结构特征,ZnCo2O4花状微球展现出高的锂存储容量和出色的循环稳定性(50个循环后在100 mA g(-1)时为1136 mA h g(-1))。这种卓越的电化学性能可归因于纳米片中的分层结构和多孔结构,从而有效地增加了活性材料与电解质之间的接触面积,缩短了Li +扩散途径并缓冲了循环过程中的体积变化。 (C)2015 Elsevier Ltd和Techna Group S.r.l.版权所有。

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