Nanoparticles of nickel phosphide (Ni_2P) have been investigated for electrocatalytic activity and stability for the hydrogen evolution reaction (HER) in acidic solutions, under which proton exchange membrane-based electrolysis is operational. The catalytically active Ni_2P nanoparticles were hollow and faceted to expose a high density of the Ni_2P(001) surface, which has previously been predicted based on theory to be an active HER catalyst. The Ni2P nanoparticles had among the highest HER activity of any non-noble metal electrocatalyst reported to date, producing H_2(g) with nearly quantitative faradaic yield, while also affording stability in aqueous acidic media
The Ni2P nanowires were simply synthesized via a rapid one-step hydrothermal approach, in which deio...
Since the emergence of hydrogen generation by water-splitting as a core renewable-energy technology,...
The preparation of size- and shape-controlled nanoparticles has enabled the understanding of importa...
Nanoparticles of nickel phosphide (Ni_2P) have been investigated for electrocatalytic activity and s...
Nanoparticles of nickel phosphide (Ni_2P) have been investigated for electrocatalytic activity and s...
Polydispersed dinickel phosphide (Ni2P) nanoparticles were synthesized by a simple and scalable soli...
This work describes the electrocatalysis of amorphous nickel phosphide (Niâ P) electrodeposited ont...
Electrochemical water splitting into hydrogen and oxygen is a promising method for solar energy stor...
The sustainable hydrogen fuel from water electrolysis demands the development of efficient and robus...
Hydrogen, a wholly non-polluting and renewable fuel, may be obtained by the electrocatalytic hydroge...
Nickel phosphide (NiPx)-based nanocomposites emerged as a new class of highly promising non-noble-me...
A cost-effective and scalable approach was developed to produce monodisperse Ni2−xCoxP nanocrystals ...
In this study, the electrocatalytic activity of nickel foam, which is activated by cobalt, molybdenu...
The exploitation of a low-cost catalyst is desirable for hydrogen generation from electrolysis or ph...
Searching for cost-efficient electrocatalysts with high catalytic activity and stability for hydroge...
The Ni2P nanowires were simply synthesized via a rapid one-step hydrothermal approach, in which deio...
Since the emergence of hydrogen generation by water-splitting as a core renewable-energy technology,...
The preparation of size- and shape-controlled nanoparticles has enabled the understanding of importa...
Nanoparticles of nickel phosphide (Ni_2P) have been investigated for electrocatalytic activity and s...
Nanoparticles of nickel phosphide (Ni_2P) have been investigated for electrocatalytic activity and s...
Polydispersed dinickel phosphide (Ni2P) nanoparticles were synthesized by a simple and scalable soli...
This work describes the electrocatalysis of amorphous nickel phosphide (Niâ P) electrodeposited ont...
Electrochemical water splitting into hydrogen and oxygen is a promising method for solar energy stor...
The sustainable hydrogen fuel from water electrolysis demands the development of efficient and robus...
Hydrogen, a wholly non-polluting and renewable fuel, may be obtained by the electrocatalytic hydroge...
Nickel phosphide (NiPx)-based nanocomposites emerged as a new class of highly promising non-noble-me...
A cost-effective and scalable approach was developed to produce monodisperse Ni2−xCoxP nanocrystals ...
In this study, the electrocatalytic activity of nickel foam, which is activated by cobalt, molybdenu...
The exploitation of a low-cost catalyst is desirable for hydrogen generation from electrolysis or ph...
Searching for cost-efficient electrocatalysts with high catalytic activity and stability for hydroge...
The Ni2P nanowires were simply synthesized via a rapid one-step hydrothermal approach, in which deio...
Since the emergence of hydrogen generation by water-splitting as a core renewable-energy technology,...
The preparation of size- and shape-controlled nanoparticles has enabled the understanding of importa...