Enhanced bifunctional catalytic activity of surface-modified vanadyl ethylene glycolate for oxygen reduction and evolution reactions

被引:0
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作者
Kiran, G.K. [1 ]
Sreekanth, T.V.M. [3 ]
Dillip, G.R. [2 ]
Yoo, K. [3 ]
Kim, J. [1 ]
机构
[1] Energy Storage Conversion Laboratory, Department of Electrical Engineering, Chungnam National University, Daejeon,34134, Korea, Republic of
[2] Energy Institute, Centre of Rajiv Gandhi Institute of Petroleum Technology, Bengaluru,560064, India
[3] School of Mechanical Engineering, Yeungnam University, Gyeongsan-si, 38541, Korea, Republic of
基金
新加坡国家研究基金会;
关键词
Catalysis - Catalyst activity - Chronoamperometry - Electrocatalysts - Electrolysis - Electrolytic reduction - Graphene - organic-inorganic materials - Oxygen;
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摘要
This article reports the first instance of using vanadyl ethylene glycolate as an efficient bifunctional electrocatalyst for oxygen reduction (ORR) and evolution reactions (OER). A simple solvothermal method was employed for the synthesis of VEG and the surface-modified VEG with graphene oxide (VEG-GO). The VEG-GO catalyzes the reduction of oxygen to water via a four-electron pathway with an E1/2 value of 0.62 V and it possesses a low Tafel slope value (62 mV dec−1) compared to Pt/C (85 mV dec−1), suggesting efficient oxygen kinetic activity. It also catalyzes O2 evolution with an overpotential of 300 mV at 10 mA cm−2, and the chronoamperometry measurements revealed excellent stability for this material. With a potential difference of 0.91 V between ORR and OER, the VEG-GO is better than pristine VEG and many oxygen electrocatalysts reported in the literature. This work provides an important insight into using organic-inorganic hybrid materials as bifunctional electrocatalysts for the ORR and OER. © 2022 Elsevier B.V.
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