An entirely earth-abundant chromophore-relay water oxidation catalyst triad system, which is robust and efficient at neutral pH, is presented. The synthesis involves the coordination of a porphyrin derivative to a bridging Fe(CN)(5) group, which is then reacted with Co ions to prepare a covalently linked chromophore-Prussian blue analogue assembly. Light-driven water oxidation studies in the presence of an electron scavenger indicate that the triad is active and it maintains a steady activity for at least three hours. Transient absorption experiments and computational studies reveal that the Fe(CN)(5) group is more than a linker as it takes part in electron-transfer and co-operates with porphyrin in the charge separation process
Artificial photosynthesis aims at efficient water splitting into hydrogen and oxygen, by exploiting ...
Artificial photosynthesis (AP) is one of the scientific challenges that could help us achieving a gl...
The photoinduced splitting of water into hydrogen and oxygen has evoked great interest in recent yea...
An entirely earth-abundant chromophore-relay water oxidation catalyst triad system, which is robust ...
The replacement of traditional ruthenium-based photosensitizers with low-cost and abundant iron anal...
The combination of porphyrin as a sensitizer and a ruthenium complex as a water oxidation catalyst (...
A water-soluble Pt(II)-porphyrin with a high potential for one-electron oxidation (similar to 1.42 V...
A new, molecular system for the light-driven production of hydrogen in aqueous solution was develope...
Water oxidation catalysis constitutes the bottleneck for the development of energy-conversion scheme...
Inspired by natural photosynthesis, light driven water splitting aims at the production of renewable...
A salophen cobalt(II) complex enables water oxidation at neutral pH in photoactivated sacrificial cy...
Finding photostable, first-row transition metal-based molecular systems for photocatalytic water oxi...
The catalytic activity of metal hexacyanometallates (Prussian blue-type coordination polymers) was t...
Artificial photosynthesis, i.e. conversion of solar energy into fuels, is considered as an attractiv...
Cobalt–oxo cubane clusters were immobilized on a Nafion film-coated fluorine-doped tin oxide (FTO) e...
Artificial photosynthesis aims at efficient water splitting into hydrogen and oxygen, by exploiting ...
Artificial photosynthesis (AP) is one of the scientific challenges that could help us achieving a gl...
The photoinduced splitting of water into hydrogen and oxygen has evoked great interest in recent yea...
An entirely earth-abundant chromophore-relay water oxidation catalyst triad system, which is robust ...
The replacement of traditional ruthenium-based photosensitizers with low-cost and abundant iron anal...
The combination of porphyrin as a sensitizer and a ruthenium complex as a water oxidation catalyst (...
A water-soluble Pt(II)-porphyrin with a high potential for one-electron oxidation (similar to 1.42 V...
A new, molecular system for the light-driven production of hydrogen in aqueous solution was develope...
Water oxidation catalysis constitutes the bottleneck for the development of energy-conversion scheme...
Inspired by natural photosynthesis, light driven water splitting aims at the production of renewable...
A salophen cobalt(II) complex enables water oxidation at neutral pH in photoactivated sacrificial cy...
Finding photostable, first-row transition metal-based molecular systems for photocatalytic water oxi...
The catalytic activity of metal hexacyanometallates (Prussian blue-type coordination polymers) was t...
Artificial photosynthesis, i.e. conversion of solar energy into fuels, is considered as an attractiv...
Cobalt–oxo cubane clusters were immobilized on a Nafion film-coated fluorine-doped tin oxide (FTO) e...
Artificial photosynthesis aims at efficient water splitting into hydrogen and oxygen, by exploiting ...
Artificial photosynthesis (AP) is one of the scientific challenges that could help us achieving a gl...
The photoinduced splitting of water into hydrogen and oxygen has evoked great interest in recent yea...