Nanoparticles of nickel phosphide are promising materials to replace the currently used rare Pt-group metals at cathode-side electrodes in devices for electrochemical hydrogen production. Chemical modification by doping can be used to fine-tune the electrocatalytic activity, but this path requires theoretical, atomic-level support which has not been widely available for Ni-P. We present a density functional theory analysis of Al-doped Ni2P surfaces to identify structural motifs that could contribute to the improved behavior of the catalyst. Based on the formation energies of substitutionally Al-doped Ni sublattices, we find doping to take place preferably at the topmost layers. The Ni-Ni bridge and the P-top sites are the optimal ones in te...
Hydrogen evolution reaction (HER) is directly relevant to green hydrogen production from water split...
We report microcrystalline Ni<sub>3</sub>P as a noble-metal-free electrocatalyst for the H<sub>2</su...
Nanoparticles of Pt/Ni alloys represent state of the art electrocatalysts for fuel cell reactions. D...
We present insights into the mechanism and the active site for hydrogen evolution on nickel phosphid...
We are grateful for the generous computing resources from CSC-IT Center for Scientific Computing and...
| openaire: EC/H2020/686053/EU//CritCatIn this study, we looked at the hydrogen evolution reaction o...
The activity of Ni<sub>2</sub>P catalysts for the hydrogen evolution reaction (HER) is currently lim...
The activity of Ni<sub>2</sub>P catalysts for the hydrogen evolution reaction (HER) is currently lim...
The activity of Ni<sub>2</sub>P catalysts for the hydrogen evolution reaction (HER) is currently lim...
Nickel phosphide (Ni2P) is a promising material for the electrocatalytic generation of hydrogen from...
Computational catalyst design has the potential to revolutionize the energy and chemical industries ...
Computational catalyst design has the potential to revolutionize the energy and chemical industries ...
Computational catalyst design has the potential to revolutionize the energy and chemical industries ...
We report a comprehensive density functional theory (DFT) study on the stability, geometric structur...
Hydrogen evolution reaction (HER) is directly relevant to green hydrogen production from water split...
Hydrogen evolution reaction (HER) is directly relevant to green hydrogen production from water split...
We report microcrystalline Ni<sub>3</sub>P as a noble-metal-free electrocatalyst for the H<sub>2</su...
Nanoparticles of Pt/Ni alloys represent state of the art electrocatalysts for fuel cell reactions. D...
We present insights into the mechanism and the active site for hydrogen evolution on nickel phosphid...
We are grateful for the generous computing resources from CSC-IT Center for Scientific Computing and...
| openaire: EC/H2020/686053/EU//CritCatIn this study, we looked at the hydrogen evolution reaction o...
The activity of Ni<sub>2</sub>P catalysts for the hydrogen evolution reaction (HER) is currently lim...
The activity of Ni<sub>2</sub>P catalysts for the hydrogen evolution reaction (HER) is currently lim...
The activity of Ni<sub>2</sub>P catalysts for the hydrogen evolution reaction (HER) is currently lim...
Nickel phosphide (Ni2P) is a promising material for the electrocatalytic generation of hydrogen from...
Computational catalyst design has the potential to revolutionize the energy and chemical industries ...
Computational catalyst design has the potential to revolutionize the energy and chemical industries ...
Computational catalyst design has the potential to revolutionize the energy and chemical industries ...
We report a comprehensive density functional theory (DFT) study on the stability, geometric structur...
Hydrogen evolution reaction (HER) is directly relevant to green hydrogen production from water split...
Hydrogen evolution reaction (HER) is directly relevant to green hydrogen production from water split...
We report microcrystalline Ni<sub>3</sub>P as a noble-metal-free electrocatalyst for the H<sub>2</su...
Nanoparticles of Pt/Ni alloys represent state of the art electrocatalysts for fuel cell reactions. D...