Electrochemical water splitting is one of the most promising ways for clean hydrogen energy production. Along with using earth-Abundant, atomically engineered catalysts that are highly active and stable, clean, chemical-waste-free catalyst production-using minimum resources-is a major hurdle toward achieving zero-carbon-emission commercial operations. Herein, we propose a clean way to fabricate NiSe2-CoSe2 on nickel-cobalt foam (NCF) using pure water for the in situ sprouting of NiCo layered double hydroxide (LDH) precursors. The excellent electrocatalytic activity for overall water splitting in alkaline electrolytes is highlighted by the overpotentials of NiSe2-CoSe2/NCF for delivering current densities of 10 and 400 mA cm-2 (j10 and j400,...
In-situ engineering of nonprecious catalysts with highly electrocatalytic performances for H2 or O2 ...
To relieve our strong reliance on fossil fuels and to reduce greenhouse effects, there is an ever-gr...
Water electrolysis to generate hydrogen and oxygen at low overpotential is one of the main requireme...
Electrochemical water splitting is one of the most promising ways for clean hydrogen energy producti...
Engineering high-performance non-precious metal-based bifunctional catalysts for water splitting are...
Engineering high-performance non-precious metal-based bifunctional catalysts for water splitting are...
Engineering high-performance non-precious metal-based bifunctional catalysts for water splitting are...
Fabrication of high-performance noble-metal-free bifunctional electrocatalysts for both hydrogen evo...
Designing an effective, stabilized catalyst is a key challenge to water splitting for both electroca...
Herein a facile synthesis methodology is reported that results in a unique 3D NiSe@Ni1−xFexSe2 core–...
Fabrication of high-performance noble-metal-free bifunctional electrocatalysts for both hydrogen evo...
Herein we have shown that electrodeposited NiSe2 can be used as a bifunctional electrocatalyst under...
To relieve our strong reliance on fossil fuels and to reduce greenhouse effects, there is an ever-gr...
In-situ engineering of nonprecious catalysts with highly electrocatalytic performances for H2 or O2 ...
In-situ engineering of nonprecious catalysts with highly electrocatalytic performances for H2 or O2 ...
In-situ engineering of nonprecious catalysts with highly electrocatalytic performances for H2 or O2 ...
To relieve our strong reliance on fossil fuels and to reduce greenhouse effects, there is an ever-gr...
Water electrolysis to generate hydrogen and oxygen at low overpotential is one of the main requireme...
Electrochemical water splitting is one of the most promising ways for clean hydrogen energy producti...
Engineering high-performance non-precious metal-based bifunctional catalysts for water splitting are...
Engineering high-performance non-precious metal-based bifunctional catalysts for water splitting are...
Engineering high-performance non-precious metal-based bifunctional catalysts for water splitting are...
Fabrication of high-performance noble-metal-free bifunctional electrocatalysts for both hydrogen evo...
Designing an effective, stabilized catalyst is a key challenge to water splitting for both electroca...
Herein a facile synthesis methodology is reported that results in a unique 3D NiSe@Ni1−xFexSe2 core–...
Fabrication of high-performance noble-metal-free bifunctional electrocatalysts for both hydrogen evo...
Herein we have shown that electrodeposited NiSe2 can be used as a bifunctional electrocatalyst under...
To relieve our strong reliance on fossil fuels and to reduce greenhouse effects, there is an ever-gr...
In-situ engineering of nonprecious catalysts with highly electrocatalytic performances for H2 or O2 ...
In-situ engineering of nonprecious catalysts with highly electrocatalytic performances for H2 or O2 ...
In-situ engineering of nonprecious catalysts with highly electrocatalytic performances for H2 or O2 ...
To relieve our strong reliance on fossil fuels and to reduce greenhouse effects, there is an ever-gr...
Water electrolysis to generate hydrogen and oxygen at low overpotential is one of the main requireme...