A Ni-PY5 [PY5 = 2,6-bis(1,1-bis(2-pyridyl)ethyl)pyridine)] complex has been found to act as an electrocatalyst for oxidizing water to dioxygen in aqueous phosphate buffer solutions. The rate of water oxidation catalyzed by the Ni-PY5 is remarkably enhanced by the proton acceptor base HPO42−, with rate constant of 1820 M−1 s−1. Controlled potential bulk electrolysis with Ni-PY5 at pH 10.8 under an applied potential of 1.5 V vs. normal hydrogen electrode (NHE) resulted in dioxygen formation with a high faradaic efficiency over 90%. A detailed mechanistic study identifies the water nucleophilic attack pathway for water oxidation catalysis
The development of novel water oxidation catalysts is important in the context of renewable fuels pr...
ABSTRACT: The generation of renewable H2 through an efficient photochemical route requires photoindu...
Understanding how electrocatalysts function in a nucleophile oxidation reaction (NOR) on anode, repl...
Water-soluble homogeneous nickel catalysts have been rarely investigated for catalytic water oxidati...
The water-soluble cationic nickel(II) complex of <i>meso</i>-tetrakis(4-<i>N</i>-methylpyridyl)po...
The present report uncovers the borderline between homogeneous and heterogeneous water oxidation cat...
Efficient and robust electrocatalysts are required for the oxygen evolution reaction (OER). Photosys...
The excellent bifunctional catalytic activity of nickel phosphide (Ni2P) for water splitting is repo...
Herein, the role of Ni oxide in the electrocatalytic water oxidation of a nickel (II) Schiff base (N...
A polyoxometalate (POM)-supported nickel(II) coordination complex, [Ni<sup>II</sup>(2,2′-bpy)<sub>3...
Hydrogen production by water splitting is a promising method to store energy. Water-oxidation reacti...
The present report uncovers the borderline between homogeneous and heterogeneous water oxidation cat...
The production of hydrogen by water electrolysis benefits from the development of water oxidation ca...
Water oxidation electrocatalyzed by Ni<sup>2+</sup> under neutral conditions was investigated using ...
Electrolytic water oxidation using earth-abundant elements is a key challenge in the quest to develo...
The development of novel water oxidation catalysts is important in the context of renewable fuels pr...
ABSTRACT: The generation of renewable H2 through an efficient photochemical route requires photoindu...
Understanding how electrocatalysts function in a nucleophile oxidation reaction (NOR) on anode, repl...
Water-soluble homogeneous nickel catalysts have been rarely investigated for catalytic water oxidati...
The water-soluble cationic nickel(II) complex of <i>meso</i>-tetrakis(4-<i>N</i>-methylpyridyl)po...
The present report uncovers the borderline between homogeneous and heterogeneous water oxidation cat...
Efficient and robust electrocatalysts are required for the oxygen evolution reaction (OER). Photosys...
The excellent bifunctional catalytic activity of nickel phosphide (Ni2P) for water splitting is repo...
Herein, the role of Ni oxide in the electrocatalytic water oxidation of a nickel (II) Schiff base (N...
A polyoxometalate (POM)-supported nickel(II) coordination complex, [Ni<sup>II</sup>(2,2′-bpy)<sub>3...
Hydrogen production by water splitting is a promising method to store energy. Water-oxidation reacti...
The present report uncovers the borderline between homogeneous and heterogeneous water oxidation cat...
The production of hydrogen by water electrolysis benefits from the development of water oxidation ca...
Water oxidation electrocatalyzed by Ni<sup>2+</sup> under neutral conditions was investigated using ...
Electrolytic water oxidation using earth-abundant elements is a key challenge in the quest to develo...
The development of novel water oxidation catalysts is important in the context of renewable fuels pr...
ABSTRACT: The generation of renewable H2 through an efficient photochemical route requires photoindu...
Understanding how electrocatalysts function in a nucleophile oxidation reaction (NOR) on anode, repl...