The excellent bifunctional catalytic activity of nickel phosphide (Ni2P) for water splitting is reported. Ni2P, an active hydrogen evolving catalyst, is shown to be highly active for oxygen evolution. Only 290 mV of overpotential is required to generate a current density of 10 mA cm(-2) in 1 M KOH. Under oxygen evolving conditions, Ni2P undergoes structural modification to form a Ni2P/NiOx core-shell assembly, the catalytic active species. Ni2P is applied on both electrodes of an alkaline electrolyser and a current density of 10 mA cm(-2) is generated at 1.63 V
In situ engineering highly active and ultrastable bi-functional electrocatalysts based on metal ions...
An approach to significantly enhance the performance of the cost-effective nickel phosphide catalyst...
In this work, mixed Ni/Co and Ni/Fe metal phosphides with different metal ratios were synthesized th...
The excellent bifunctional catalytic activity of nickel phosphide (Ni2P) for water splitting is repo...
Electrochemical water splitting into hydrogen and oxygen is a promising method for solar energy stor...
To search for the efficient non-noble metal based and/or earth-abundant electrocatalysts for overall...
The investigation of nickel phosphide (Ni5P4) as a catalyst for the hydrogen (HER) and oxygen evolut...
The Ni2P nanowires were simply synthesized via a rapid one-step hydrothermal approach, in which deio...
We adopted a simple one-step electrochemical deposition to acquire an efficient nickel cobalt phosph...
We adopted a simple one-step electrochemical deposition to acquire an efficient nickel cobalt phosph...
Development of easy-to-make, highly active, and stable bifunctional electrocatalysts for water split...
Here we present a novel combined-strategy of cation tuning and surface engineering for the fabricati...
Here we present a novel combined-strategy of cation tuning and surface engineering for the fabricati...
In situ engineering highly active and ultrastable bi-functional electrocatalysts based on metal ions...
The design and development of economical and highly efficient electrocatalysts for the hydrogen evol...
In situ engineering highly active and ultrastable bi-functional electrocatalysts based on metal ions...
An approach to significantly enhance the performance of the cost-effective nickel phosphide catalyst...
In this work, mixed Ni/Co and Ni/Fe metal phosphides with different metal ratios were synthesized th...
The excellent bifunctional catalytic activity of nickel phosphide (Ni2P) for water splitting is repo...
Electrochemical water splitting into hydrogen and oxygen is a promising method for solar energy stor...
To search for the efficient non-noble metal based and/or earth-abundant electrocatalysts for overall...
The investigation of nickel phosphide (Ni5P4) as a catalyst for the hydrogen (HER) and oxygen evolut...
The Ni2P nanowires were simply synthesized via a rapid one-step hydrothermal approach, in which deio...
We adopted a simple one-step electrochemical deposition to acquire an efficient nickel cobalt phosph...
We adopted a simple one-step electrochemical deposition to acquire an efficient nickel cobalt phosph...
Development of easy-to-make, highly active, and stable bifunctional electrocatalysts for water split...
Here we present a novel combined-strategy of cation tuning and surface engineering for the fabricati...
Here we present a novel combined-strategy of cation tuning and surface engineering for the fabricati...
In situ engineering highly active and ultrastable bi-functional electrocatalysts based on metal ions...
The design and development of economical and highly efficient electrocatalysts for the hydrogen evol...
In situ engineering highly active and ultrastable bi-functional electrocatalysts based on metal ions...
An approach to significantly enhance the performance of the cost-effective nickel phosphide catalyst...
In this work, mixed Ni/Co and Ni/Fe metal phosphides with different metal ratios were synthesized th...