Iron phosphide (FeP) has been recently demonstrated as a very attractive electrocatalyst for the hydrogen evolution reaction (HER). However, the understanding of its properties is far from satisfactory. Herein, we report the HER performance of FeP nanoparticles is enhanced after a stability test due to reduced surface-charge-transfer resistance in the HER process. The synthetic temperature and reactant ratio are important for surface-charge-transfer resistance, the electrochemically active surface area, and HER activity. Hydrogenation apparently improves the HER performance of FeP nanoparticles by reducing the surface-charge-transfer resistance, overpotential, and Tafel slope. Enhanced HER performance is observed after a stability test for ...
It remains a challenge to develop efficient electrocatalysts in neutral media for hydrogen evolution...
Iron is the cheapest and one of the most abundant transition metals. Natural [FeFe]-hydrogenases exh...
Nanoparticles of cobalt phosphide, CoP, have been prepared and evaluated as electrocatalysts for the...
A highly active and stable non-Pt electrocatalyst for hydrogen production has been pursued for a lon...
Nanostructured transition-metal phosphides have recently emerged as Earth-abundant alternatives to p...
A highly active and stable non-Pt electrocatalyst for hydrogen production has been pursued for a lon...
Iron phosphides show promising but limited activity as hydrogen evolution reaction (HER) catalysts d...
In large-scale, hydrogen production from water-splitting represents the most promising solution for ...
We report the solvothermal synthesis of iron phosphide electrocatalysts using a low-cost phosphorus ...
The development of nonprecious metal electrocatalysts for polymer-electrolyte membrane (PEM) water e...
The rapidly developing world poses a high energy demand. Hydrogen is recognized as one of the most i...
Engineering the electronic properties of transition metal phosphides has shown great effectiveness i...
A solvothermal synthesis of iron phosphide electrocatalysts using triphenylphosphine (TPP) as phosph...
Electrocatalysts such as platinum (Pt), are used to minimize the overpotential for the hydrogen evol...
© 2014 Hydrogen Energy Publications, LLC. All rights reserved. Efficient and economical hydrogen evo...
It remains a challenge to develop efficient electrocatalysts in neutral media for hydrogen evolution...
Iron is the cheapest and one of the most abundant transition metals. Natural [FeFe]-hydrogenases exh...
Nanoparticles of cobalt phosphide, CoP, have been prepared and evaluated as electrocatalysts for the...
A highly active and stable non-Pt electrocatalyst for hydrogen production has been pursued for a lon...
Nanostructured transition-metal phosphides have recently emerged as Earth-abundant alternatives to p...
A highly active and stable non-Pt electrocatalyst for hydrogen production has been pursued for a lon...
Iron phosphides show promising but limited activity as hydrogen evolution reaction (HER) catalysts d...
In large-scale, hydrogen production from water-splitting represents the most promising solution for ...
We report the solvothermal synthesis of iron phosphide electrocatalysts using a low-cost phosphorus ...
The development of nonprecious metal electrocatalysts for polymer-electrolyte membrane (PEM) water e...
The rapidly developing world poses a high energy demand. Hydrogen is recognized as one of the most i...
Engineering the electronic properties of transition metal phosphides has shown great effectiveness i...
A solvothermal synthesis of iron phosphide electrocatalysts using triphenylphosphine (TPP) as phosph...
Electrocatalysts such as platinum (Pt), are used to minimize the overpotential for the hydrogen evol...
© 2014 Hydrogen Energy Publications, LLC. All rights reserved. Efficient and economical hydrogen evo...
It remains a challenge to develop efficient electrocatalysts in neutral media for hydrogen evolution...
Iron is the cheapest and one of the most abundant transition metals. Natural [FeFe]-hydrogenases exh...
Nanoparticles of cobalt phosphide, CoP, have been prepared and evaluated as electrocatalysts for the...