Solar fuels generated from the light-induced splitting of water into H2 and O2 is an appealing strategy for securing future energy. The use of platinum for catalyzing hydrogen evolution may be bypassed with earth-abundant catalysts. In a previous study, our lab realized the immobilization of a proton reduction catalyst, the cobalt diimine-dioxime molecular complex, within a cathode material steadily evolving H2 from fully aqueous media. In this work, we report on the implementation of this catalyst into light-driven devices. Operating conditions in the solvent of interest, water, were screened. The molecular catalyst degrades when free in solution, but retains activity when supported on an electrode, even in the presence of O2, and could th...
The production of H2 through sunlight-driven water splitting appears to be a promising solution for ...
The production of H2 through sunlight-driven water splitting appears to be a promising solution for ...
The production of H2 through sunlight-driven water splitting appears to be a promising solution for ...
Solar fuels generated from the light-induced splitting of water into H2 and O2 is an appealing strat...
Solar fuels generated from the light-induced splitting of water into H2 and O2 is an appealing strat...
Solar fuels generated from the light-induced splitting of water into H2 and O2 is an appealing strat...
Solar fuels generated from the light-induced splitting of water into H2 and O2 is an appealing strat...
Solar fuels generated from the light-induced splitting of water into H2 and O2 is an appealing strat...
Générer des carburants solaires, comme l’hydrogène via la photoélectrolyse de l’eau, est une stratég...
Production of solar fuels in a dye-sensitized hydrogen-evolving photoelectrochemical cell, where spl...
Production of solar fuels in a dye-sensitized hydrogen-evolving photoelectrochemical cell, where spl...
Production of solar fuels in a dye-sensitized hydrogen-evolving photoelectrochemical cell, where spl...
Production of solar fuels in a dye-sensitized hydrogen-evolving photoelectrochemical cell, where spl...
Production of solar fuels in a dye-sensitized hydrogen-evolving photoelectrochemical cell, where spl...
Production of solar fuels in a dye-sensitized hydrogen-evolving photoelectrochemical cell, where spl...
The production of H2 through sunlight-driven water splitting appears to be a promising solution for ...
The production of H2 through sunlight-driven water splitting appears to be a promising solution for ...
The production of H2 through sunlight-driven water splitting appears to be a promising solution for ...
Solar fuels generated from the light-induced splitting of water into H2 and O2 is an appealing strat...
Solar fuels generated from the light-induced splitting of water into H2 and O2 is an appealing strat...
Solar fuels generated from the light-induced splitting of water into H2 and O2 is an appealing strat...
Solar fuels generated from the light-induced splitting of water into H2 and O2 is an appealing strat...
Solar fuels generated from the light-induced splitting of water into H2 and O2 is an appealing strat...
Générer des carburants solaires, comme l’hydrogène via la photoélectrolyse de l’eau, est une stratég...
Production of solar fuels in a dye-sensitized hydrogen-evolving photoelectrochemical cell, where spl...
Production of solar fuels in a dye-sensitized hydrogen-evolving photoelectrochemical cell, where spl...
Production of solar fuels in a dye-sensitized hydrogen-evolving photoelectrochemical cell, where spl...
Production of solar fuels in a dye-sensitized hydrogen-evolving photoelectrochemical cell, where spl...
Production of solar fuels in a dye-sensitized hydrogen-evolving photoelectrochemical cell, where spl...
Production of solar fuels in a dye-sensitized hydrogen-evolving photoelectrochemical cell, where spl...
The production of H2 through sunlight-driven water splitting appears to be a promising solution for ...
The production of H2 through sunlight-driven water splitting appears to be a promising solution for ...
The production of H2 through sunlight-driven water splitting appears to be a promising solution for ...