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Part A: Materials Science

Thickness dependent supercapacitor behaviour of sol-gel spin coated nanostructured vanadium pentoxide thin films

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Pages 1490-1499 | Received 29 Aug 2012, Accepted 29 Oct 2012, Published online: 29 Nov 2012
 

Abstract

Vanadium pentoxide thin films of various thicknesses have been prepared by sol-gel spin coating method on glass and conducting substrates. X-ray diffraction analysis reveals crystalline nature for the 6–12 layered films (170–310 nm). The crystalline films indicate a preferential orientation of the crystallites along the (200) plane. FTIR studies of the V2O5 xerogel show the presence of V–O–V and V= O bond confirming the formation of V2O5. The scanning electron microscope images reveal formation of nanostructures in the 6–12 layered films. Optical absorption studies indicate a band gap of 2.2–2.5 eV. Pseudocapacitance behaviour of the V2O5 films was studied using cyclic voltammetric technique and impedance analysis. V2O5 films of thickness 202 nm (8 layers) exhibit a specific capacitance of 346 F/g at a scan rate of 5 mV/s.

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