A highly active and stable non-Pt electrocatalyst for hydrogen production has been pursued for a long time as an inexpensive alternative to Pt-based catalysts. Herein, we report a simple and effective approach to prepare high-performance iron phosphide (FeP) nanoparticle electrocatalysts using iron oxide nanoparticles as a precursor. A single-step heating procedure of polydopamine-coated iron oxide nanoparticles leads to both carbonization of polydopamine coating to the carbon shell and phosphidation of iron oxide to FeP, simultaneously. Carbon-shell-coated FeP nanoparticles show a low overpotential of 71 mV at 10 mA cm-2, which is comparable to that of a commercial Pt catalyst, and remarkable long-term durability under acidic conditions fo...
Recently, great attention has been spent in the exploitation of stable and highly efficient nonpreci...
Nanoparticles of cobalt phosphide, CoP, have been prepared and evaluated as electrocatalysts for the...
Developing highly efficient and low-cost electrocatalyst for water splitting to produce H<sub>2</sub...
A highly active and stable non-Pt electrocatalyst for hydrogen production has been pursued for a lon...
A highly active and stable non-Pt electrocatalyst for hydrogen production has been pursued for a lon...
The development of durable and efficient non-noble electrocatalysts for the hydrogen evolution react...
In large-scale, hydrogen production from water-splitting represents the most promising solution for ...
Iron phosphide (FeP) has been recently demonstrated as a very attractive electrocatalyst for the hyd...
Nanostructured transition-metal phosphides have recently emerged as Earth-abundant alternatives to p...
In this Letter, we demonstrate the direct growth of FeP nanoparticles film on carbon cloth (FeP/CC) ...
Rational design of multicomponent material structures with strong interfacial interactions enabling ...
In this Letter, we demonstrate the direct growth of FeP nanoparticles film on carbon cloth (FeP/CC) ...
Iron phosphides show promising but limited activity as hydrogen evolution reaction (HER) catalysts d...
The development of nonprecious metal electrocatalysts for polymer-electrolyte membrane (PEM) water e...
We report the solvothermal synthesis of iron phosphide electrocatalysts using a low-cost phosphorus ...
Recently, great attention has been spent in the exploitation of stable and highly efficient nonpreci...
Nanoparticles of cobalt phosphide, CoP, have been prepared and evaluated as electrocatalysts for the...
Developing highly efficient and low-cost electrocatalyst for water splitting to produce H<sub>2</sub...
A highly active and stable non-Pt electrocatalyst for hydrogen production has been pursued for a lon...
A highly active and stable non-Pt electrocatalyst for hydrogen production has been pursued for a lon...
The development of durable and efficient non-noble electrocatalysts for the hydrogen evolution react...
In large-scale, hydrogen production from water-splitting represents the most promising solution for ...
Iron phosphide (FeP) has been recently demonstrated as a very attractive electrocatalyst for the hyd...
Nanostructured transition-metal phosphides have recently emerged as Earth-abundant alternatives to p...
In this Letter, we demonstrate the direct growth of FeP nanoparticles film on carbon cloth (FeP/CC) ...
Rational design of multicomponent material structures with strong interfacial interactions enabling ...
In this Letter, we demonstrate the direct growth of FeP nanoparticles film on carbon cloth (FeP/CC) ...
Iron phosphides show promising but limited activity as hydrogen evolution reaction (HER) catalysts d...
The development of nonprecious metal electrocatalysts for polymer-electrolyte membrane (PEM) water e...
We report the solvothermal synthesis of iron phosphide electrocatalysts using a low-cost phosphorus ...
Recently, great attention has been spent in the exploitation of stable and highly efficient nonpreci...
Nanoparticles of cobalt phosphide, CoP, have been prepared and evaluated as electrocatalysts for the...
Developing highly efficient and low-cost electrocatalyst for water splitting to produce H<sub>2</sub...