The cost-effective deployment of several key energy technologies, such as water electrolysis, CO2 electroreduction and metal–air batteries, relies on the design and engineering of cost-effective catalysts able to accelerate the sluggish kinetics of the oxygen evolution reaction (OER). Herein, we detail the synthesis, processing and performance of a cobalt oxide-based OER electrocatalyst with optimized composition, atomic arrangement and nano/microstructure. We demonstrate that doping the cobalt oxide with a higher electronegativity element such as molybdenum promotes the participation of lattice oxygen in the OER. Besides, the processing of the catalyst at moderate temperatures results in an amorphous material with extended compositional an...
The challenges of the increasing energy consumption and global warming have prompted scientific expl...
The challenges of the increasing energy consumption and global warming have prompted scientific expl...
Water oxidation to dioxygen is an essential energy capture process in biological systems mediated by...
The cost-effective deployment of several key energy technologies, such as water electrolysis, CO2 el...
Cost-effective electrocatalysts for oxygen evolution reactions are attractive for energy conversion ...
The rational design of high-efficiency, low-cost electrocatalysts for electrochemical water oxidatio...
Abstract Recently, molybdenum dioxide (MoO2) has gained intensive attention as an eco‐friendly and e...
The industrial application of water splitting for oxygen evolution requires low cost, high performan...
The amorphous Co-Ce binary metal oxides Co1-yCeyOx prepared by the photochemical metal–organic depos...
Developing high-performance and low-cost electrode for oxygen evolution reaction (OER) is a crucial ...
Abstract Cobalt-based hydroxide are ideal candidates for the oxygen evolution reaction. Herein, we ...
The development of high-efficiency and cost-efficient oxygen evolution reaction (OER) catalysts is a...
[[abstract]]Electrocatalytic water splitting is a key technique to produce hydrogen fuels, which can...
Electrolytic water splitting has the capability to store the electricity generated from renewable en...
Water splitting offers the opportunity for storing solar energy and, thus, producing carbon-neutral ...
The challenges of the increasing energy consumption and global warming have prompted scientific expl...
The challenges of the increasing energy consumption and global warming have prompted scientific expl...
Water oxidation to dioxygen is an essential energy capture process in biological systems mediated by...
The cost-effective deployment of several key energy technologies, such as water electrolysis, CO2 el...
Cost-effective electrocatalysts for oxygen evolution reactions are attractive for energy conversion ...
The rational design of high-efficiency, low-cost electrocatalysts for electrochemical water oxidatio...
Abstract Recently, molybdenum dioxide (MoO2) has gained intensive attention as an eco‐friendly and e...
The industrial application of water splitting for oxygen evolution requires low cost, high performan...
The amorphous Co-Ce binary metal oxides Co1-yCeyOx prepared by the photochemical metal–organic depos...
Developing high-performance and low-cost electrode for oxygen evolution reaction (OER) is a crucial ...
Abstract Cobalt-based hydroxide are ideal candidates for the oxygen evolution reaction. Herein, we ...
The development of high-efficiency and cost-efficient oxygen evolution reaction (OER) catalysts is a...
[[abstract]]Electrocatalytic water splitting is a key technique to produce hydrogen fuels, which can...
Electrolytic water splitting has the capability to store the electricity generated from renewable en...
Water splitting offers the opportunity for storing solar energy and, thus, producing carbon-neutral ...
The challenges of the increasing energy consumption and global warming have prompted scientific expl...
The challenges of the increasing energy consumption and global warming have prompted scientific expl...
Water oxidation to dioxygen is an essential energy capture process in biological systems mediated by...