NiO@CuO@Cu bilayered electrode: two-step electrochemical synthesis supercapacitor properties

被引:0
作者
Ahmed AL-Osta
Bushra Saleh Samer
Vijaykumar V. Jadhav
Umesh T. Nakate
Rajaram S. Mane
Mu. Naushad
机构
[1] Swami Ramanand Teerth Marathwada University,Center for Nanomaterials & Energy Devices, School of Physical Sciences
[2] Swami Ramanand Teerth Marathwada University,School of Chemical Sciences
[3] Department of Physics,Department of Chemistry, College of Science
[4] Shivaji Mahavidyalya,undefined
[5] Udgir,undefined
[6] Dist,undefined
[7] King Saud University,undefined
来源
Journal of Solid State Electrochemistry | 2017年 / 21卷
关键词
Nanostructures; Electrochemical techniques; Thin films; Alloys; Electrochemical synthesis;
D O I
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中图分类号
学科分类号
摘要
Present work deals with a two-step synthesis and electrochemical properties of nickel oxide @copper oxide@copper (NiO@CuO@Cu) bilayered electrode. In the first step, anodization (40 V for 25 min) of Cu foil has been carried out for forming Cu-hydroxide@Cu which when annealed at 300 °C for 1 h produces CuO@Cu. In the second step, Ni-hydroxide is deposited onto CuO@Cu by applying current density of 0.03 A/cm2 for 3 min which when re-annealed at 300 °C for 1 h gives out NiO@CuO@Cu bilayered electrode. Obtained NiO@CuO@Cu bilayered electrode demonstrates separate CuO and NiO phases. The electrochemical properties have obtained using cyclic voltammetry, galvonostatic charge-discharge, and Nyquist plot measurements that reveal an importance of NiO@CuO@Cu as a potential electrode material in the electrochemical supercapacitor application with 58.14, 51.25, and 4.73 F g−1 values in 0.5 M, NaOH, KOH, and Na2SO4 electrolytes, respectively, measured at 2 mVs−1 scan rate.
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页码:2609 / 2614
页数:5
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  • [11] Xie K(2002)Preparation, characteristics and photovoltaic properties of cuprous oxide Science 295 1045-1047
  • [12] Li J(1998)Bell Labs win superconductivity patent J Am Chem Soc 120 11467-11478
  • [13] Lai Y(2010)Magnetic Resonant Mode in the Single-Layer High Temperature Superconductor Tl J Power Sources 195 313-319
  • [14] Lu W(2013)Ba Electrochim Acta 88 347-357
  • [15] Zhang Z(2008)Cu Mater Chem Phys 108 184-187
  • [16] Liu Y(2014)Propylene oxidation on copper oxide surfaces: electronic and geometric contributions to reactivity and selectivity Nanoscale 6 5008-5048
  • [17] Zhou L(undefined)Self-assembled synthesis of hierarchical nanostructured CuO with various morphologies and their application as anodes for lithium ion batteries undefined undefined undefined-undefined
  • [18] Huang H(undefined)Fabrication of anchored copper oxide nanoparticles on graphene oxide nanosheets via an electrostatic coprecipitation and its application as supercapacitor undefined undefined undefined-undefined
  • [19] Simon P(undefined)Synthesis of CuO nanocrystalline and their application as electrode materials for capacitors undefined undefined undefined-undefined
  • [20] Gogotsi Y(undefined)Solution synthesis of metal oxides for electrochemical energy storage applications undefined undefined undefined-undefined