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Oxygen evolution reaction characteristics of synthetic nickel-cobalt-oxide electrodes for alkaline anion-exchange membrane water electrolysis

Authors
Koo, Tae WooPark, Chan SuKim, Yang DoLee, DooyongPark, SungkyunLee, Jae HoChoi, Sung MookChoi, Chul Young
Issue Date
Nov-2015
Publisher
KOREAN PHYSICAL SOC
Keywords
Water electrolysis; Oxygen evolution reaction; NiCo2O4 powders
Citation
JOURNAL OF THE KOREAN PHYSICAL SOCIETY, v.67, no.9, pp.1558 - 1562
Journal Title
JOURNAL OF THE KOREAN PHYSICAL SOCIETY
Volume
67
Number
9
Start Page
1558
End Page
1562
URI
https://scholarworks.bwise.kr/hongik/handle/2020.sw.hongik/9271
DOI
10.3938/jkps.67.1558
ISSN
0374-4884
Abstract
A polymer electrolyte membrane water electrolysis system can produce high-purity hydrogen gases in a highly efficient manner. However, the level of hydrogen gas production is still small. In addition, noble-metal catalysts for the reaction in acidic environments, as well as an additional drying step to remove water contained in the hydrogen, are required. Therefore, water electrolysis system with high efficiency and lower cost, an alkaline anion-exchange membrane system that can produce high-purity hydrogen without a noble-metal catalyst, is needed. Nano-size NiCo2O4 powders were prepared by using a sol-gel method to achieve an efficient and economical water electrolysis system. When the powder was calcined at 450 A degrees C, the crystallinity and the cyclic voltammogram measurement showed the best values. In addition, the 15-wt.% polytetrafluoroethylene mixed NiCo2O4 powders exhibited the largest cyclic voltammetry active area and the highest oxygen evolution reaction activity with the appropriate stability.
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