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Cited 18 time in webofscience Cited 22 time in scopus
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Chalcogenide nanocomposite electrodes grown by chemical etching of Ni-foam as electrocatalyst for efficient oxygen evolution reactionopen access

Authors
Deokate, Ramesh J.Mujawar, Sarfraj H.Chavan, Harish S.Mali, Sawanta S.Hong, Chang KookIm, HyunsikInamdar, Akbar I.
Issue Date
Feb-2020
Publisher
WILEY
Keywords
chemical etching; electrocatalysis; oxygen evolution reaction; water splitting
Citation
INTERNATIONAL JOURNAL OF ENERGY RESEARCH, v.44, no.2, pp 1233 - 1243
Pages
11
Indexed
SCIE
SCOPUS
Journal Title
INTERNATIONAL JOURNAL OF ENERGY RESEARCH
Volume
44
Number
2
Start Page
1233
End Page
1243
URI
https://scholarworks.dongguk.edu/handle/sw.dongguk/25763
DOI
10.1002/er.5018
ISSN
0363-907X
1099-114X
Abstract
We report on the synthesis of NiSSe nanocomposite by chemical etching of Ni-foam using simple solvothermal technique and investigated it as an electrocatalyst for the oxygen evolution reaction (OER). Different morphologies such as nanograins, branched mesh-like architecture, and agglomerated nanograins with nanoporous are obtained for NiSSe, NiSe, and NiS, respectively. The overpotentials of 247, 266, and 329 mV (vs RHE) are obtained to attain a current density of 30 mA cm(-2) for NiSSe, NiS, and NiSe nanocomposites, respectively. Interestingly, ternary nanocomposite reaches a high current density of 100 mA cm(-2) by operating only at an overpotential of 342 mV. The low Tafel slope of 175.7 mV dec(-1) reveals that the ternary nanocomposite consists of most favorable catalytic kinetics for mass and electron transport during the OER reaction. The improved catalytic performance of NiSSe nanocomposite is attributed to the synergy between electrochemcial surface area and improved electronic conductivity.
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