A method for constructing transition metal catalysts for the oxygen evolution reaction (OER) is proposed. Facile preparation is realized in the case of no added metal source via dielectric barrier discharge (DBD) microplasma under 10 min, and the thickness of the nanosheet is only 6.5 nm. The prepared ultrathin CuO nanosheets on copper foam (CuO UTNS/CF) display a catalytic activity of 262 mV overpotential (η) at 10 mA cm–2 for the OER in alkaline media. The as-prepared electrocatalyst guarantees appealing long-term durability (>90 h) and a high turnover frequency (TOF) of 0.488 mol O2 s–1 at 426 mV. Compared to CuO/CF prepared traditionally, the overpotential of CuO UTNS/CF can be directly reduced to 38 mV. Moreover, hydroxyl radicals (•OH...
Understanding the synergism of bimetallic transition metal (TM)-based catalysts for oxygen evolution...
Abstract: This work reports an environment friendly alternative to epitaxially grow copper oxide nan...
In the urge of designing noble metal‐free and sustainable electrocatalysts for oxygen evolution reac...
A high activity of a two-dimensional (2D) copper oxide (CuO) electrocatalyst for the oxygen evolutio...
Developing simple and cost-effective methods for the rapid synthesis of oxygen evolution reaction (O...
International audienceTo use water as the source of electrons for proton or CO2 reduction within ele...
The water oxidation that occurred at the anode is related to various renewable energy systems, and t...
The urea oxidation reaction (UOR) is a possible solution to solve the world\u27s energy crisis. Fuel...
The urea oxidation reaction (UOR) is a possible solution to solve the world’s energy crisis. F...
Nanostructured copper-cobalt oxide (CuxCo3-xO4, CCO) electrodes are grown directly on conducting sub...
Efficient and low‐cost multifunctional electrodes play a key role in improving the performance of en...
In this paper, we develop a novel strategy toward the in-situ growth of core/shell nanorods array co...
Electrochemical splitting of water to hydrogen and oxygen with renewable energy input represents a k...
International audienceCu2O nanostructures of cubic or octahedral shape as well as decorated with gol...
The exploration of metal/metal oxide nanocomposites as catalysts for hydrogen and oxygen evolution i...
Understanding the synergism of bimetallic transition metal (TM)-based catalysts for oxygen evolution...
Abstract: This work reports an environment friendly alternative to epitaxially grow copper oxide nan...
In the urge of designing noble metal‐free and sustainable electrocatalysts for oxygen evolution reac...
A high activity of a two-dimensional (2D) copper oxide (CuO) electrocatalyst for the oxygen evolutio...
Developing simple and cost-effective methods for the rapid synthesis of oxygen evolution reaction (O...
International audienceTo use water as the source of electrons for proton or CO2 reduction within ele...
The water oxidation that occurred at the anode is related to various renewable energy systems, and t...
The urea oxidation reaction (UOR) is a possible solution to solve the world\u27s energy crisis. Fuel...
The urea oxidation reaction (UOR) is a possible solution to solve the world’s energy crisis. F...
Nanostructured copper-cobalt oxide (CuxCo3-xO4, CCO) electrodes are grown directly on conducting sub...
Efficient and low‐cost multifunctional electrodes play a key role in improving the performance of en...
In this paper, we develop a novel strategy toward the in-situ growth of core/shell nanorods array co...
Electrochemical splitting of water to hydrogen and oxygen with renewable energy input represents a k...
International audienceCu2O nanostructures of cubic or octahedral shape as well as decorated with gol...
The exploration of metal/metal oxide nanocomposites as catalysts for hydrogen and oxygen evolution i...
Understanding the synergism of bimetallic transition metal (TM)-based catalysts for oxygen evolution...
Abstract: This work reports an environment friendly alternative to epitaxially grow copper oxide nan...
In the urge of designing noble metal‐free and sustainable electrocatalysts for oxygen evolution reac...