Article ID | Journal | Published Year | Pages | File Type |
---|---|---|---|---|
7833860 | Applied Surface Science | 2018 | 27 Pages |
Abstract
Reduced graphene oxide incorporated cobalt oxide nanocomposites were prepared by a simple hydrothermal route followed by annealing the product at 300â¯Â°C, 400â¯Â°C and 500â¯Â°C in air. Structural analysis by X-ray diffraction confirmed the formation of rGO presence and Co3O4 spinel structure. Scanning electron microscopic images of as-synthesized product showed layered reduced graphene oxide structure and the annealed samples showed agglomerated nanoparticles to porous structure. Functional group analysis confirmed the formation of Co3O4 phase and reduced Graphene oxide. The surface area was increased from 13.72â¯m2/g, to 23.16â¯m2/g for the sample annealed at 300â¯Â°C-500â¯Â°C. Electrochemical properties of annealed products were investigated by cyclic voltametry and Rotating Disc Electrode (RDE) measurements produced Oxygen Reduction Reaction (ORR) catalytic activity with 3.2 electron transfer number. The observed onset potential is +0.76â¯V vs RHE and current density of 3.25â¯mA/cm2 at 1600â¯rpm for the sample annealed at 500â¯Â°C.
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Authors
Gokuladeepan Periyasamy, Karthigeyan Annamalai,