An approach to significantly enhance the performance of the cost-effective nickel phosphide catalyst for electrochemical water oxidation has been developed via interfacing with Mg oxide-hydroxide. We have synthesized Ni2P nanoparticles anchored on Mg2O(OH)2-like phase supported on carbon paper. During the oxygen evolution reaction, the well-defined Ni2P nanoparticles serve as precursors for the immediate formation of active and stable nanostructured nickel hydroxide catalyst. As the anode for the oxygen evolution reaction in an alkaline electrolyte, the electrode shows a modest Tafel slope of 48 mV dec–1 and a large turnover frequency of 0.05 s–1 at an overpotential of 0.4 V. Microstructure and composition studies of the catalyst suggest th...
The excellent bifunctional catalytic activity of nickel phosphide (Ni2P) for water splitting is repo...
Surface wettability is very important for designing and developing heterogeneous electrocatalysts th...
Searching for active, durable, and economical electrocatalysts for the oxygen evolution reaction (OE...
International audienceWe report a simple low-cost concept for the preparation of water-oxidation ele...
International audienceWe report a simple low-cost concept for the preparation of water-oxidation ele...
International audienceWe report a simple low-cost concept for the preparation of water-oxidation ele...
We report a simple low-cost concept for the preparation of water-oxidation electrocatalyst via modif...
International audienceWe report a simple low-cost concept for the preparation of water-oxidation ele...
International audienceWe report a simple low-cost concept for the preparation of water-oxidation ele...
Electrochemical water splitting into hydrogen and oxygen is a promising method for solar energy stor...
Here we present a novel combined-strategy of cation tuning and surface engineering for the fabricati...
International audienceWe report a simple low-cost concept for the preparation of water-oxidation ele...
Here we present a novel combined-strategy of cation tuning and surface engineering for the fabricati...
We present a facile way to fabricate phosphorus and aluminum codoped nickel oxide-based nanosheets b...
The excellent bifunctional catalytic activity of nickel phosphide (Ni2P) for water splitting is repo...
The excellent bifunctional catalytic activity of nickel phosphide (Ni2P) for water splitting is repo...
Surface wettability is very important for designing and developing heterogeneous electrocatalysts th...
Searching for active, durable, and economical electrocatalysts for the oxygen evolution reaction (OE...
International audienceWe report a simple low-cost concept for the preparation of water-oxidation ele...
International audienceWe report a simple low-cost concept for the preparation of water-oxidation ele...
International audienceWe report a simple low-cost concept for the preparation of water-oxidation ele...
We report a simple low-cost concept for the preparation of water-oxidation electrocatalyst via modif...
International audienceWe report a simple low-cost concept for the preparation of water-oxidation ele...
International audienceWe report a simple low-cost concept for the preparation of water-oxidation ele...
Electrochemical water splitting into hydrogen and oxygen is a promising method for solar energy stor...
Here we present a novel combined-strategy of cation tuning and surface engineering for the fabricati...
International audienceWe report a simple low-cost concept for the preparation of water-oxidation ele...
Here we present a novel combined-strategy of cation tuning and surface engineering for the fabricati...
We present a facile way to fabricate phosphorus and aluminum codoped nickel oxide-based nanosheets b...
The excellent bifunctional catalytic activity of nickel phosphide (Ni2P) for water splitting is repo...
The excellent bifunctional catalytic activity of nickel phosphide (Ni2P) for water splitting is repo...
Surface wettability is very important for designing and developing heterogeneous electrocatalysts th...
Searching for active, durable, and economical electrocatalysts for the oxygen evolution reaction (OE...