Design of Novel transition metal based multiphase stannate: An efficient electrocatalyst for oxygen evolution reaction
Author:
Funder
Ministry of Science and ICT, South Korea
National Research Foundation of Korea
Publisher
Elsevier BV
Subject
Condensed Matter Physics,General Materials Science
Reference58 articles.
1. Overall electrochemical splitting of water at the heterogeneous interface of nickel and iron oxide;Suryanto;Nat. Commun.,2019
2. Recent advances in the development of water oxidation electrocatalysts at mild pH;Li;Small,2019
3. Boosting oxygen evolution reaction performance by nickel substituted cobalt-iron oxide nanoparticles embedded over reduced graphene oxide;Madakannu;Mater. Chem. Phys.,2020
4. Oxygen-deficient BaTiO3-x perovskite as an efficient bifunctional oxygen electrocatalyst;Chen;Nano Energy,2015
5. Enhancing electrocatalytic activity of perovskite oxides by tuning cation deficiency for oxygen reduction and evolution reactions;Zhu;Chem. Mater.,2016
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