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Synthesis of r-GO-incorporated CoWO4 nanostructure for high-performance supercapattery applications
Authors:Prabakaran  P.  Prabhu  S.  Selvaraj  M.  Navaneethan  M.  Ramu  P.  Ramesh  R.
Affiliation:1.PG and Research Department of Physics, Government Arts College(A), Salem, Tamil Nadu, 636007, India
;2.Department of Physics, Periyar University, Salem, Tamil Nadu, 636011, India
;3.Department of Chemistry, Faculty of Science, King Khalid University, Abha, Saudi Arabia
;4.Nanotechnology Research Centre (NRC), SRM Institute of Science and Technology, Kattankulathur, Kancheepuram, Tamil Nadu, 603203, India
;
Abstract:

The avant-garde supercapatteries have received substantial curiosity for their noteworthy electrochemical performance. Devising battery-type substances with appreciable electrocapacitive accomplishment and high electrical transmittance is imperative to boost the energy stowing knack of supercapattery devices. A pure CoWO4 nanostructure and a composite of CoWO4 incorporating r-GO were prepared by hydrothermal method. The XRD and FTIR results validated the effective development of high-quality CoWO4 and r-GO. FESEM images reveal a nanosphere-like architecture of CoWO4 over r-GO sheets. The pure and composite nanomaterials show good battery-like traits in electrochemical studies. The CoWO4/r-GO electrode exhibits better electrochemical activity compared to pure sample. The specific capacitance (and specific charge capacity) calculated at a current density of 2 A g?1 for CWO/r-GO and CWO is 382.7 A g?1 (158.1 C g?1) and 262.7 A g?1 (105.1 C g?1), respectively. The results obtained herein evince that the developed nanocomposite is a propitious electrode candidate for supercapattery.

Keywords:
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