Surficial reconstruction in bimetallic oxide SrCoOx through Ce-doping for improved corrosion resistance during electrocatalytic oxygen evolution reaction in simulated alkaline saline waterOA
Surficial reconstruction in bimetallic oxide SrCoOx through Ce-doping for improved corrosion resistance during electrocatalytic oxygen evolution reaction in simulated alkaline saline water
Mohammed Misbah Uddin;Bilal Masood Pirzada;Faisal Rasool;Dalaver Anjum;Gareth Price;Ahsanulhaq Qurashi
Department of Chemistry,Khalifa University of Science and Technology,P.O.box 127788,Abu Dhabi,United Arab Emirates||Center for Catalysis and Separations,Khalifa University of Science and Technology,Abu Dhabi,P.O.Box 127788,United Arab EmiratesDepartment of Chemistry,Khalifa University of Science and Technology,P.O.box 127788,Abu Dhabi,United Arab Emirates||Center for Catalysis and Separations,Khalifa University of Science and Technology,Abu Dhabi,P.O.Box 127788,United Arab EmiratesDepartment of Chemistry,Khalifa University of Science and Technology,P.O.box 127788,Abu Dhabi,United Arab EmiratesDepartment of Physics,Khalifa University of Science and Technology,P.O.box 127788,Abu Dhabi,United Arab EmiratesDepartment of Chemistry,Khalifa University of Science and Technology,P.O.box 127788,Abu Dhabi,United Arab EmiratesDepartment of Chemistry,Khalifa University of Science and Technology,P.O.box 127788,Abu Dhabi,United Arab Emirates||Center for Catalysis and Separations,Khalifa University of Science and Technology,Abu Dhabi,P.O.Box 127788,United Arab Emirates
bimetallic oxideSrCoOxcerium dopingoxygen evolution reaction(OER)chlorine evolution reactionpassivation layer
bimetallic oxideSrCoOxcerium dopingoxygen evolution reaction(OER)chlorine evolution reactionpassivation layer
《纳米能源研究(英文)》 2025 (3)
11-25,15
The current work was financially supported under the fund(FSU-2020-01).The authors would like to acknowledge the technical support of AMCC at Khalifa University.
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