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超声辅助制备基于氧化铜/锑酸锌纳米复合材料的超级电容器电极材料的分级结构

Ultrasonication-assisted fabrication of hierarchical architectures of copper oxide/zinc antimonate nanocomposites based supercapacitor electrode materials.

作者信息

Balasubramaniam M, Balakumar S

机构信息

National Centre for Nanoscience and Nanotechnology, University of Madras, Guindy Campus, Chennai 600 025, India.

National Centre for Nanoscience and Nanotechnology, University of Madras, Guindy Campus, Chennai 600 025, India.

出版信息

Ultrason Sonochem. 2019 Sep;56:337-349. doi: 10.1016/j.ultsonch.2019.04.021. Epub 2019 Apr 11.

DOI:10.1016/j.ultsonch.2019.04.021
PMID:31101271
Abstract

In this work, a new nanohybrid consisting of copper oxide and zinc antimonate was designed using ultrasonication assisted homogenous magnetic stirring approach and investigated their performance as an electrode material for supercapacitors. Combination of the duo could enhance the electrical conductivity and charge storage capacity of whole nanostructured electrode, which is very much essential for supercapacitor application. Primarily, the prepared nanohybrid electrode material was investigated through XRD, FT-IR, FE-SEM, HR-TEM, UV-DRS, PL and XPS to determine their structural, morphological, optical and compositional characteristics. Thereafter, the electrochemical properties of the nanohybrid electrode were investigated using CV, GCD and EIS studies in 1.0 M KOH solution. The fabricated nanohybrid electrode material exhibits exceptional electrochemical performance by delivering maximum specific capacitance of 257.14 F g at a current density of 12.5 A g. The nanocomposite showed high cycling stability of 102.0% even after 2000 cycles at a current density of 10.0 A g. These exceptional electrochemical characteristics of CuO/ZnSbO nanocomposites are due to their dual nanorod morphology, influence of ultrasonication on non-aggregated nanocomposite formation, presence of more number of electrochemical active sites, and their synergistic interactions. The obtained results confirmed that CuO/ZnSbO nanocomposites could be a potential candidate as electrode materials for supercapacitors.

摘要

在这项工作中,采用超声辅助均匀磁搅拌方法设计了一种由氧化铜和锑酸锌组成的新型纳米杂化物,并研究了其作为超级电容器电极材料的性能。二者的结合可以提高整个纳米结构电极的电导率和电荷存储容量,这对于超级电容器的应用非常重要。首先,通过XRD、FT-IR、FE-SEM、HR-TEM、UV-DRS、PL和XPS对制备的纳米杂化电极材料进行了研究,以确定其结构、形态、光学和组成特性。此后,在1.0 M KOH溶液中使用CV、GCD和EIS研究了纳米杂化电极的电化学性能。制备的纳米杂化电极材料在12.5 A g的电流密度下表现出优异的电化学性能,最大比电容为257.14 F g。即使在10.0 A g的电流密度下经过2000次循环后,该纳米复合材料仍显示出102.0%的高循环稳定性。CuO/ZnSbO纳米复合材料的这些优异电化学特性归因于其双纳米棒形态、超声处理对非团聚纳米复合材料形成的影响、更多数量的电化学活性位点的存在及其协同相互作用。所得结果证实,CuO/ZnSbO纳米复合材料可能是超级电容器电极材料的潜在候选者。

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