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通过水热合成RGO/纳米结构硫化钴复合材料开发高能量密度超级电容器。

Development of high energy density supercapacitor through hydrothermal synthesis of RGO/nano-structured cobalt sulphide composites.

作者信息

Jana Milan, Saha Sanjit, Samanta Pranab, Murmu Naresh Chandra, Kim Nam Hoon, Kuila Tapas, Lee Joong Hee

机构信息

Surface Engineering & Tribology Division, Council of Scientific and Industrial Research-Central Mechanical Engineering Research Institute, Durgapur-713209, India. Academy of Scientific and Innovative Research (AcSIR), Anusandhan Bhawan, 2 Rafi Marg, New Delhi-110001, India.

出版信息

Nanotechnology. 2015 Feb 20;26(7):075402. doi: 10.1088/0957-4484/26/7/075402. Epub 2015 Feb 2.

DOI:10.1088/0957-4484/26/7/075402
PMID:25642986
Abstract

Co9S8/reduced graphene oxide (RGO) composites were prepared on nickel foam substrate through hydrothermal reaction and used directly as supercapacitor electrode. The field emission scanning electron microscopy analysis of the composites showed the formation of Co9S8 nano-rods on the RGO surfaces. The average crystal size of the Co9S8 nano rods grown on the RGO sheets were ∼25-36 nm as calculated from x-ray diffraction analysis. The reduction of graphene oxide (GO) was confirmed by Raman and x-ray photoelectron spectroscopy analysis. The electrical conductivity of the Co9S8/RGO composite was recorded as 1690 S m(-1) at room temperature, which is much higher than that of pure GO further confirming the hydrothermal reduction of GO. Cyclic voltammetry, galvanostatic charge-discharge and electrochemical impedance spectroscopy were investigated to check the electrochemical performances of the Co9S8/RGO composites. The Co9S8/RGO composites supported on nickel foam showed very high specific capacitance (Sc)(1349 F g(-1) at a current density of 2.2 A g(-1)), energy density (68.6 W h kg(-1)) and power density (1319 W kg(-1)) in 6 M KOH electrolyte. The retention in Sc of the composite electrode was found to be ∼96% after 1000 charge-discharge cycles.

摘要

通过水热反应在泡沫镍基底上制备了Co9S8/还原氧化石墨烯(RGO)复合材料,并将其直接用作超级电容器电极。对复合材料的场发射扫描电子显微镜分析表明,在RGO表面形成了Co9S8纳米棒。根据X射线衍射分析计算,生长在RGO片上的Co9S8纳米棒的平均晶体尺寸约为25 - 36 nm。通过拉曼光谱和X射线光电子能谱分析证实了氧化石墨烯(GO)的还原。Co9S8/RGO复合材料在室温下的电导率记录为1690 S m(-1),远高于纯GO,进一步证实了GO的水热还原。研究了循环伏安法、恒电流充放电和电化学阻抗谱,以检测Co9S8/RGO复合材料的电化学性能。负载在泡沫镍上的Co9S8/RGO复合材料在6 M KOH电解液中表现出非常高的比电容(Sc)(在电流密度为2.2 A g(-1)时为1349 F g(-1))、能量密度(68.6 W h kg(-1))和功率密度(1319 W kg(-1))。复合电极在1000次充放电循环后的Sc保持率约为96%。

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