In the urge of designing noble metal‐free and sustainable electrocatalysts for oxygen evolution reaction (OER), herein, a mineral Digenite Cu9S5 has been prepared from a molecular copper(I) precursor, [{(PyHS)2CuI(PyHS)}2](OTf)2 (1), and utilized as an anode material in electrocatalytic OER for the first time. A hot injection of 1 yielded a pure phase and highly crystalline Cu9S5, which was then electrophoretically deposited (EPD) on a highly conducting nickel foam (NF) substrate. When assessed as an electrode for OER, the Cu9S5/NF displayed an overpotential of merely 298±3 mV at a current density of 10 mA cm−2 in alkaline media. The overpotential recorded here supersedes the value obtained for the best reported Cu‐based as well as the benc...
The sluggish kinetics of the oxygen evolution reaction at the anode severely limits the hydrogen pr...
The electrolysis of water is limited by the high overpotential of the oxygen evolution reaction (OER...
The development of low-cost, high-efficiency, and robust electrocatalysts for the oxygen evolution r...
In the urge of designing noble metal-free and sustainable electrocatalysts for oxygen evolution reac...
International audienceTo use water as the source of electrons for proton or CO2 reduction within ele...
Development of cost-effective oxygen evolution catalysts is of capital importance for the deployment...
Development of cost-effective oxygen evolution catalysts is of capital importance for the deployment...
The oxygen reduction reaction (ORR) that for instance takes place at the cathode of fuel cells is on...
The number of active sites and their intrinsic activity are key factors in designing high-performanc...
Developing earth abundant catalysts for clean energy technologies is vital to address the issues rel...
We have synthesized Cu2O nanoparticles (∼25 nm) starting from CuO (∼107 nm) and copper oxalate nanor...
The electrochemical oxygen reduction reaction (ORR) is an essential half-reaction for the utilizatio...
The exploration of metal/metal oxide nanocomposites as catalysts for hydrogen and oxygen evolution i...
Here, a facile and novel strategy for the preparation of Cu-doped RuO2 hollow porous polyhedra compo...
The number of active sites and their intrinsic activity are key factors in designing high-performanc...
The sluggish kinetics of the oxygen evolution reaction at the anode severely limits the hydrogen pr...
The electrolysis of water is limited by the high overpotential of the oxygen evolution reaction (OER...
The development of low-cost, high-efficiency, and robust electrocatalysts for the oxygen evolution r...
In the urge of designing noble metal-free and sustainable electrocatalysts for oxygen evolution reac...
International audienceTo use water as the source of electrons for proton or CO2 reduction within ele...
Development of cost-effective oxygen evolution catalysts is of capital importance for the deployment...
Development of cost-effective oxygen evolution catalysts is of capital importance for the deployment...
The oxygen reduction reaction (ORR) that for instance takes place at the cathode of fuel cells is on...
The number of active sites and their intrinsic activity are key factors in designing high-performanc...
Developing earth abundant catalysts for clean energy technologies is vital to address the issues rel...
We have synthesized Cu2O nanoparticles (∼25 nm) starting from CuO (∼107 nm) and copper oxalate nanor...
The electrochemical oxygen reduction reaction (ORR) is an essential half-reaction for the utilizatio...
The exploration of metal/metal oxide nanocomposites as catalysts for hydrogen and oxygen evolution i...
Here, a facile and novel strategy for the preparation of Cu-doped RuO2 hollow porous polyhedra compo...
The number of active sites and their intrinsic activity are key factors in designing high-performanc...
The sluggish kinetics of the oxygen evolution reaction at the anode severely limits the hydrogen pr...
The electrolysis of water is limited by the high overpotential of the oxygen evolution reaction (OER...
The development of low-cost, high-efficiency, and robust electrocatalysts for the oxygen evolution r...