Electrocatalytic water oxidation which is otherwise recently popularized as the oxygen evolution reaction (OER) is the significant half-cell reaction in the field of hydrogen …
Reducing high overpotential for the oxygen evolution reaction (OER) is an important challenge for the utilization of clean and renewable energy resources. An obstacle that …
D Wu, Y Wei, X Ren, X Ji, Y Liu, X Guo, Z Liu… - Advanced …, 2018 - Wiley Online Library
It is highly desired but still remains challenging to design and develop a Co‐based nanoparticle‐encapsulated conductive nanoarray at room temperature for high …
Electrochemistry will play a vital role in creating sustainable energy solutions in the future, particularly for the conversion and storage of electrical into chemical energy in electrolysis …
Y Cheng - Progress in natural science: materials international, 2015 - Elsevier
The water electrolysis for hydrogen production is constrained by the thermodynamically unfavorable oxygen evolution reaction (OER), which requires input of a large amount of …
CC Pavel, F Cecconi, C Emiliani… - Angewandte Chemie …, 2014 - Wiley Online Library
Low‐temperature electricity‐driven water splitting is an established technology for hydrogen production. However, the two main types, namely proton exchange membrane (PEM) and …
S Siracusano, N Van Dijk, E Payne-Johnson… - Applied Catalysis B …, 2015 - Elsevier
Abstract IrOx and Ir 0.7 Ru 0.3 Ox nanosized materials of similar crystallite size (5 nm) were prepared for application as oxygen evolution electrocatalysts in solid polymer membrane …
Water electrolysis supplied by renewable energy is the foremost technology for producing “green” hydrogen for fuel cell vehicles. In addition, the ability to rapidly follow an intermittent …
J Tian, Q Liu, AM Asiri, KA Alamry, X Sun - ChemSusChem, 2014 - Wiley Online Library
Abstract Graphitic C3N4 (g‐C3N4) is used as a low‐cost organic oxygen evolution reaction (OER) electrocatalyst. The integration of ultrathin g‐C3N4 nanosheets with graphene leads …