Synthesis of rod-type Co2.4Mn0.6O4 via oxalate precipitation for water splitting catalysts

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초록

Development of a cost-effective oxygen evolution reaction (OER) catalyst for hydrogen production from water has attracted the attention of scientists due to its potential to solve current environmental and energy issues, such as CO2 emissions and depletion of fossil fuels. In this paper, we report a facile synthesis to develop cobal-tmanganese-oxide (MnxCo3-xO4, CMO) nanorods via an oxalate precipitation method followed by annealing at different temperatures. Importantly, morphology and surface area of the CMO nanorods, which are directly related to the OER activity, can be precisely controlled by changing annealing temperatures. The CMO nanorods engineered by oxalate precipitation and subsequent heat treatment show promising OER catalytic performance, such as a small overpotential of 365 mV for generating a current density of 10 mA cm(-2), a low Tafel slope of 50.6 mV dec(-1), and excellent long-term stability in alkaline media. Electrochemical properties combined with materials characterization provide insightful information on the OER mechanism of the CMO nanorods.

키워드

Cobalt-manganese oxideElectrocatalystOxygen evolution reactionWater splittingOXYGEN REDUCTIONEVOLUTION REACTIONBIFUNCTIONAL ELECTROCATALYSTNANOSHEET ARRAYSPINEL MNCO2O4COBALT OXIDEEFFICIENTNIPERFORMANCECHALLENGES
제목
Synthesis of rod-type Co2.4Mn0.6O4 via oxalate precipitation for water splitting catalysts
저자
Park, Kyoung RyeolJeon, Jae EunKim, KangminOh, NuriKo, Yong HoLee, JaewoongLee, Seung HwanRyu, Jeong HoHan, HyukSuMhin, Sungwook
DOI
10.1016/j.apsusc.2020.145390
발행일
2020-04
유형
Article; Proceedings Paper
저널명
Applied Surface Science
510
페이지
1 ~ 7