In this paper we report a theoretical and a multiscale simulation study of the hydrogen evolution reaction (HER) on the [Ni(PH 2N H 2)2]2+ catalyst in acidic media (2H+ + 2e- → H2). First, at the DFT calculations level, a cyclic pathway for the HER is proposed highlighting the shuttling of electrons with protons on the conformationally flexible catalyst. The theoretical calculation gives a better understanding of the efficient cyclic pathway of [Ni(PH 2NH 2) 2]2+, and the effect of solvent on the mechanism has been discussed. The σ-donating and π-accepting nature of H2-Ni bond has been identified in the H2 complex. The oxidation state of the Ni centre and geometrical changes of the catalyst in the reaction coordinate are also identified. Th...
The fundamental understanding of electrocatalytic active sites for hydrogen evolution reaction (HER)...
A nickel bis(diphosphine) complex containing pendant amines in the second coordination sphere, [Ni...
The mechanism for Hydrogen Evolution Reaction (HER) in [NiFe] hydrogenase enzymes distinguishes them...
The design of electrocatalysts for the oxidation and production of H<sub>2</sub> is important for th...
Electrocatalytic activity of a water-soluble nickel complex, [Ni(DHMPE)<sub>2</sub>]<sup>2+</sup> (...
The nickel-based P<sub>2</sub><sup>Ph</sup>N<sub>2</sub><sup>Bn</sup> electrocatalysts comprised of ...
Nickel bisdiphosphine complexes bearing pendant amines form a unique series of catalysts (so-called ...
Mechanistic details for the aqueous hydrogen evolution reaction (HER) electrocatalyst [Ni(DHMPE)2]2...
Hydrogen evolution reaction (HER) is directly relevant to green hydrogen production from water split...
The usage of cleaner energy resources, such as hydrogen gas (H2) derived from electrolysis of water,...
This study tackles the core issues associated with near-neutral pH water splitting, particularly reg...
Nickel phosphide (Ni2P) is a promising material for the electrocatalytic generation of hydrogen from...
The hydrogen production electrocatalyst Ni(P<sup>Ph</sup><sub>2</sub>N<sup>Ph</sup><sub>2</sub>)<su...
Electrolysis of water by electricity generated from renewable energy sources is promising sustainabl...
The design of hydrogen oxidation and production electrocatalysts is important for the development of...
The fundamental understanding of electrocatalytic active sites for hydrogen evolution reaction (HER)...
A nickel bis(diphosphine) complex containing pendant amines in the second coordination sphere, [Ni...
The mechanism for Hydrogen Evolution Reaction (HER) in [NiFe] hydrogenase enzymes distinguishes them...
The design of electrocatalysts for the oxidation and production of H<sub>2</sub> is important for th...
Electrocatalytic activity of a water-soluble nickel complex, [Ni(DHMPE)<sub>2</sub>]<sup>2+</sup> (...
The nickel-based P<sub>2</sub><sup>Ph</sup>N<sub>2</sub><sup>Bn</sup> electrocatalysts comprised of ...
Nickel bisdiphosphine complexes bearing pendant amines form a unique series of catalysts (so-called ...
Mechanistic details for the aqueous hydrogen evolution reaction (HER) electrocatalyst [Ni(DHMPE)2]2...
Hydrogen evolution reaction (HER) is directly relevant to green hydrogen production from water split...
The usage of cleaner energy resources, such as hydrogen gas (H2) derived from electrolysis of water,...
This study tackles the core issues associated with near-neutral pH water splitting, particularly reg...
Nickel phosphide (Ni2P) is a promising material for the electrocatalytic generation of hydrogen from...
The hydrogen production electrocatalyst Ni(P<sup>Ph</sup><sub>2</sub>N<sup>Ph</sup><sub>2</sub>)<su...
Electrolysis of water by electricity generated from renewable energy sources is promising sustainabl...
The design of hydrogen oxidation and production electrocatalysts is important for the development of...
The fundamental understanding of electrocatalytic active sites for hydrogen evolution reaction (HER)...
A nickel bis(diphosphine) complex containing pendant amines in the second coordination sphere, [Ni...
The mechanism for Hydrogen Evolution Reaction (HER) in [NiFe] hydrogenase enzymes distinguishes them...