A dye-sensitized photoelectrochemical cell (DS-PEC) is a promising device for direct conversion of solar energy into fuel. The basic idea, inspired by natural photosynthesis, is to couple the photoinduced charge separation process to catalytic water splitting. The photo-oxidized dye coupled to a water oxidation catalyst (WOC) should exert a thermodynamic driving force for the catalytic cycle, while water provides the electrons for regenerating the oxidized dye. These conditions impose specific energetic constraints on the molecular components of the photoanode in the DS-PEC. Here, we consider a supramolecular complex integrating a mononuclear Ru-based WOC with a fully organic naphthalene-diimide (NDI) dye that is able to perform fast photoi...
Converting solar energyto fuels such as hydrogen by the reaction of water splitting is a promising s...
Light-driven water oxidation occurs in oxygenic photosynthesis in Photosystem II where reductive equ...
Water splitting contains two half-reactions, the water oxidation reaction and the hydrogen reduction...
To improve the performance of dye-sensitized photoelectrochemical cell (DS-PEC) devices for splittin...
As a virtually inexhaustible source, solar energy plays a major role in future global energy scenari...
Dye-Sensitized Photoelectrochemical Cells are promising devices in solar energy conversion. However,...
With increasing carbon dioxide levels in the atmosphere and their detrimental effect on the global c...
Solar water splitting into H2 and O2 with visible light has been achieved by a molecular assembly. T...
Water-splitting dye-sensitized photoelectrochemical cells (WS-DSPECs) utilize molecular species for ...
A detailed photophysical investigation of the photocatalytic water oxidation system based on the tet...
Dyes endowed with strongly oxidizing ground state oxidation potentials are exploited in dye sensitiz...
The mechanisms of how dyes and catalysts for solar-driven transformations such as water oxidation to...
In order for solar energy to serve as a primary energy source, it must be paired with energy storage...
International audienceVisible light-driven water splitting performed within a photoelectrochemical c...
Solar energy has immense potential to supply clean, sustainable energy for mankind. Dye-sensitized p...
Converting solar energyto fuels such as hydrogen by the reaction of water splitting is a promising s...
Light-driven water oxidation occurs in oxygenic photosynthesis in Photosystem II where reductive equ...
Water splitting contains two half-reactions, the water oxidation reaction and the hydrogen reduction...
To improve the performance of dye-sensitized photoelectrochemical cell (DS-PEC) devices for splittin...
As a virtually inexhaustible source, solar energy plays a major role in future global energy scenari...
Dye-Sensitized Photoelectrochemical Cells are promising devices in solar energy conversion. However,...
With increasing carbon dioxide levels in the atmosphere and their detrimental effect on the global c...
Solar water splitting into H2 and O2 with visible light has been achieved by a molecular assembly. T...
Water-splitting dye-sensitized photoelectrochemical cells (WS-DSPECs) utilize molecular species for ...
A detailed photophysical investigation of the photocatalytic water oxidation system based on the tet...
Dyes endowed with strongly oxidizing ground state oxidation potentials are exploited in dye sensitiz...
The mechanisms of how dyes and catalysts for solar-driven transformations such as water oxidation to...
In order for solar energy to serve as a primary energy source, it must be paired with energy storage...
International audienceVisible light-driven water splitting performed within a photoelectrochemical c...
Solar energy has immense potential to supply clean, sustainable energy for mankind. Dye-sensitized p...
Converting solar energyto fuels such as hydrogen by the reaction of water splitting is a promising s...
Light-driven water oxidation occurs in oxygenic photosynthesis in Photosystem II where reductive equ...
Water splitting contains two half-reactions, the water oxidation reaction and the hydrogen reduction...