Understanding how electrocatalysts function in a nucleophile oxidation reaction (NOR) on anode, replacing the oxygen evolution reaction (OER) of water splitting, is vital to the development of hydrogen generation and organic electrosynthesis. Here, we propose that for β-Ni(OH)2 and NiO, the NOR activity origins are β-Ni(OH)O containing electrophilic lattice oxygen and NiO(OH)ads containing electrophilic adsorption oxygen, respectively. For β-Ni(OH)2, NOR is a two-step, one-electron reaction, including an electrogenerated catalyst dehydrogenation reaction and a spontaneous nucleophile dehydrogenation reaction. Therefore, the NOR activity of β-Ni(OH)2 can be markedly regulated by tuning the lattice oxygen ligand environment. For β-Co0.1Ni0.9(...
Earth-abundant and highly efficient electrocatalysts for the hydrogen evolution reaction (HER) and o...
The development of novel water oxidation catalysts is important in the context of renewable fuels pr...
The active site for electrocatalytic water oxidation on the highly active iron(Fe)-doped β-nickel o...
The nucleophile oxidation reaction (NOR) is of enormous significance for organic electrosynthesis an...
Because the reconstruction of catalysts is generally observed during oxidation reactions, understand...
The production of hydrogen by water electrolysis benefits from the development of water oxidation ca...
Currently, hydrogen production is based on the reforming process, leading to the emission of polluta...
Oxygen evolution reaction (OER) is critical for producing high purity hydrogen and oxygen via electr...
Identifying active sites of oxygen evolution reaction catalysts is essential for studying water oxid...
As the energy needs of society continue to grow, and pressure to produce fewer emissions continues t...
The move toward sustainable hydrogen production from water using renewable energy, a highly efficien...
Developing clean and sustainable energies as alternatives to fossil fuels is in strong demand within...
Stabilization of active NiOOH species for achieving exclusive operation of the direct mechanism of t...
The persistently increasing energy consumption and the low abundance of conventional fuels have rais...
Supplementary Information files for: Electronic coupling strategy to boost water oxidation efficienc...
Earth-abundant and highly efficient electrocatalysts for the hydrogen evolution reaction (HER) and o...
The development of novel water oxidation catalysts is important in the context of renewable fuels pr...
The active site for electrocatalytic water oxidation on the highly active iron(Fe)-doped β-nickel o...
The nucleophile oxidation reaction (NOR) is of enormous significance for organic electrosynthesis an...
Because the reconstruction of catalysts is generally observed during oxidation reactions, understand...
The production of hydrogen by water electrolysis benefits from the development of water oxidation ca...
Currently, hydrogen production is based on the reforming process, leading to the emission of polluta...
Oxygen evolution reaction (OER) is critical for producing high purity hydrogen and oxygen via electr...
Identifying active sites of oxygen evolution reaction catalysts is essential for studying water oxid...
As the energy needs of society continue to grow, and pressure to produce fewer emissions continues t...
The move toward sustainable hydrogen production from water using renewable energy, a highly efficien...
Developing clean and sustainable energies as alternatives to fossil fuels is in strong demand within...
Stabilization of active NiOOH species for achieving exclusive operation of the direct mechanism of t...
The persistently increasing energy consumption and the low abundance of conventional fuels have rais...
Supplementary Information files for: Electronic coupling strategy to boost water oxidation efficienc...
Earth-abundant and highly efficient electrocatalysts for the hydrogen evolution reaction (HER) and o...
The development of novel water oxidation catalysts is important in the context of renewable fuels pr...
The active site for electrocatalytic water oxidation on the highly active iron(Fe)-doped β-nickel o...