Water splitting is the key step towards artificial photosystems for solar energy conversion and storage in the form of chemical bonding. The oxidation of water is the bottle-neck of this process that hampers its practical utility; hence, efficient, robust, and easy to make catalytic systems based on cheap and earth-abundant materials are of exceptional importance. Herein, an in situ generated cobalt catalyst, [Co-II(TCA)(2)(H2O)(2)] (TCA=1-mesityl-1,2,3-1H-triazole-4-carboxylate), that efficiently conducts photochemical water oxidation under near-neutral conditions is presented. The catalyst showed high stability under photolytic conditions for more than 3 h of photoirradiation. During electrochemical water oxidation, the catalytic system a...
The homogeneity of molecular Co-based wateroxidation catalysts (WOCs) has been a subject of debate o...
Recently, a dinuclear cobalt complex, [(TPA)Co<sup>III</sup>(μ-OH)(μ-O<sub>2</sub>)Co<sup>III</su...
The oxygen evolution reaction (OER) is a key bottleneck step of artificial photosynthesis and an ess...
Water splitting is the key step towards artificial photosystems for solar energy conversion and stor...
Water splitting is the key step towards artificial photosystems for solar energy conversion and stor...
Water oxidation is an important half-reaction to achieve overall water splitting. In this present st...
The atomic structure of water-oxidizing nanoparticles (10–60 nm) formed from cobalt(II) salts and me...
Artificial photosynthesis is a promising strategy for renewable energy production by converting sunl...
We report a study on catalytic water oxidation by cobalt in oxygen ligand environments because s...
Inspired by natural processes, there is an enormous interest in light-driven water splitting to conv...
A salophen cobalt(II) complex enables water oxidation at neutral pH in photoactivated sacrificial c...
Water oxidation is simple but considered one of the most important electrochemical reactions; it can...
Efficient catalysis of water oxidation represents one of the major challenges en route to efficient ...
Non-oxide cobalt-based water-oxidation electrocatalysts have received attention recently for their r...
To employ molecular water reduction catalysts (WRC) in a heterogeneous setup, a stable, macrocyclic ...
The homogeneity of molecular Co-based wateroxidation catalysts (WOCs) has been a subject of debate o...
Recently, a dinuclear cobalt complex, [(TPA)Co<sup>III</sup>(μ-OH)(μ-O<sub>2</sub>)Co<sup>III</su...
The oxygen evolution reaction (OER) is a key bottleneck step of artificial photosynthesis and an ess...
Water splitting is the key step towards artificial photosystems for solar energy conversion and stor...
Water splitting is the key step towards artificial photosystems for solar energy conversion and stor...
Water oxidation is an important half-reaction to achieve overall water splitting. In this present st...
The atomic structure of water-oxidizing nanoparticles (10–60 nm) formed from cobalt(II) salts and me...
Artificial photosynthesis is a promising strategy for renewable energy production by converting sunl...
We report a study on catalytic water oxidation by cobalt in oxygen ligand environments because s...
Inspired by natural processes, there is an enormous interest in light-driven water splitting to conv...
A salophen cobalt(II) complex enables water oxidation at neutral pH in photoactivated sacrificial c...
Water oxidation is simple but considered one of the most important electrochemical reactions; it can...
Efficient catalysis of water oxidation represents one of the major challenges en route to efficient ...
Non-oxide cobalt-based water-oxidation electrocatalysts have received attention recently for their r...
To employ molecular water reduction catalysts (WRC) in a heterogeneous setup, a stable, macrocyclic ...
The homogeneity of molecular Co-based wateroxidation catalysts (WOCs) has been a subject of debate o...
Recently, a dinuclear cobalt complex, [(TPA)Co<sup>III</sup>(μ-OH)(μ-O<sub>2</sub>)Co<sup>III</su...
The oxygen evolution reaction (OER) is a key bottleneck step of artificial photosynthesis and an ess...