A pentacyclic quinoid dye, KuQ(O)3OH, combining (i) extended visible absorption up to 600 nm, (ii) excited state reduction potential >2 V vs. NHE, and (iii) a photoinduced proton-coupled electron transfer mechanism, has been used for the fabrication of dye-sensitized SnO2 photoanodes integrating a ruthenium polyoxometalate water oxidation catalyst. The resulting photoelectrode SnO2|KuQ(O)3OH|Ru4POM displays a light harvesting efficiency up to 90% in the range 500-600 nm, an onset potential as low as 0.2 V vs. NHE at pH 5.8, photoinduced oxygen evolution with a faradaic efficiency of 70 ± 15% and an absorbed-photon-to-current efficiency up to 0.12 ± 0.01%
The organic chromophore 2,2′-(benzo[c][1,2,5]thiadiazole-4,7-diyl)bis(thiophene-3-carboxylic acid), ...
International audienceIn artificial photosynthesis, chemists are aiming to borrow principles from na...
A highly active supramolecular system for visible light-driven water oxidation was developed with cy...
A pentacyclic quinoid dye, KuQ(O)3OH, combining (i) extended visible absorption up to 600 nm, (ii) e...
Abstract: Dye-sensitized photoelectrochemical cells represent an appealing solution for artificial p...
Dye-sensitised photoanodes modified with a water oxidation catalyst allow for solar-driven O2 evolut...
The combination of porphyrin as a sensitizer and a ruthenium complex as a water oxidation catalyst (...
International audienceVisible light-driven water splitting performed within a photoelectrochemical c...
Small-molecule activation is a fundamental process for several organic transformations, where abunda...
Dyes endowed with strongly oxidizing ground state oxidation potentials are exploited in dye sensitiz...
Following bio-inspired guidelines, solar-powered water oxidation can be exploited for hydrogen gener...
Following bio-inspired guidelines, solar-powered water oxidation can be exploited for hydrogen gener...
In artificial photosynthesis, the sun drives water splitting into H2 and O2 or converts CO2 into a u...
A detailed photophysical investigation of the photocatalytic water oxidation system based on the tet...
The combined use of a tetranuclear Ru(II) dendrimeric photosensitizer and of a tretraruthenium subst...
The organic chromophore 2,2′-(benzo[c][1,2,5]thiadiazole-4,7-diyl)bis(thiophene-3-carboxylic acid), ...
International audienceIn artificial photosynthesis, chemists are aiming to borrow principles from na...
A highly active supramolecular system for visible light-driven water oxidation was developed with cy...
A pentacyclic quinoid dye, KuQ(O)3OH, combining (i) extended visible absorption up to 600 nm, (ii) e...
Abstract: Dye-sensitized photoelectrochemical cells represent an appealing solution for artificial p...
Dye-sensitised photoanodes modified with a water oxidation catalyst allow for solar-driven O2 evolut...
The combination of porphyrin as a sensitizer and a ruthenium complex as a water oxidation catalyst (...
International audienceVisible light-driven water splitting performed within a photoelectrochemical c...
Small-molecule activation is a fundamental process for several organic transformations, where abunda...
Dyes endowed with strongly oxidizing ground state oxidation potentials are exploited in dye sensitiz...
Following bio-inspired guidelines, solar-powered water oxidation can be exploited for hydrogen gener...
Following bio-inspired guidelines, solar-powered water oxidation can be exploited for hydrogen gener...
In artificial photosynthesis, the sun drives water splitting into H2 and O2 or converts CO2 into a u...
A detailed photophysical investigation of the photocatalytic water oxidation system based on the tet...
The combined use of a tetranuclear Ru(II) dendrimeric photosensitizer and of a tretraruthenium subst...
The organic chromophore 2,2′-(benzo[c][1,2,5]thiadiazole-4,7-diyl)bis(thiophene-3-carboxylic acid), ...
International audienceIn artificial photosynthesis, chemists are aiming to borrow principles from na...
A highly active supramolecular system for visible light-driven water oxidation was developed with cy...