Conversion of solar energy into chemical energy in the form of hydrogen peroxide and other reactive oxygen species has been predicted to be an efficient strategy, yet few organic materials systems support these types of photochemical conversion reactions. Herein we report a simple synthetic route to yield biscoumarin-containing acenes, semiconducting small molecules with exceptional stability and tunable electrochemical and electrical properties. We find that these semiconductors are photo(electro) catalysts capable of reducing oxygen to hydrogen peroxide. Visible light irradiation of thin films on insulating substrates in pure water results in H2O2 photogeneration with water as the sacrificial electron donor. Thin films on conducting subst...
Hydrogen peroxide is one of the most important industrial chemicals and there is great demand for th...
Solar-driven photocatalytic production of hydrogen peroxide (H2O2) requires only sunlight, oxygen, a...
Organic semiconductors hold promise to enable scalable, low-cost and high-performance artificial pho...
Conversion of solar energy into chemical energy in the form of hydrogen peroxide and other reactive ...
Low-cost semiconductor photocatalysts offer unique possibilities for industrial chemical transformat...
Solar-to-chemical conversion of sunlight into hydrogen peroxide as a chemical fuel is an emerging ca...
Low-cost semiconductor photocatalysts offer unique possibilities for industrial chemical transformat...
The direct conversion of solar energy into chemical fuels, such as hydrogen, via photoelectrochemi...
With the announcement of Nobel Prize in chemistry in 2000, organic semiconductors and conjugated str...
Solar-to-chemical energy conversion, or so-called artificial photosynthesis, is a promising technolo...
The capture and conversion of solar energy into other useful forms has been the topic of discussion ...
Solar water splitting offers a potential avenue for the production of clean and storable energy in t...
International audienceVisible light-driven water splitting performed within a photoelectrochemical c...
The work presented in this thesis aims at studying the photoelectrochemical properties of conjugated...
We report ultrathin organic photovoltaic elements optimized to run photofaradaic reactions in biolog...
Hydrogen peroxide is one of the most important industrial chemicals and there is great demand for th...
Solar-driven photocatalytic production of hydrogen peroxide (H2O2) requires only sunlight, oxygen, a...
Organic semiconductors hold promise to enable scalable, low-cost and high-performance artificial pho...
Conversion of solar energy into chemical energy in the form of hydrogen peroxide and other reactive ...
Low-cost semiconductor photocatalysts offer unique possibilities for industrial chemical transformat...
Solar-to-chemical conversion of sunlight into hydrogen peroxide as a chemical fuel is an emerging ca...
Low-cost semiconductor photocatalysts offer unique possibilities for industrial chemical transformat...
The direct conversion of solar energy into chemical fuels, such as hydrogen, via photoelectrochemi...
With the announcement of Nobel Prize in chemistry in 2000, organic semiconductors and conjugated str...
Solar-to-chemical energy conversion, or so-called artificial photosynthesis, is a promising technolo...
The capture and conversion of solar energy into other useful forms has been the topic of discussion ...
Solar water splitting offers a potential avenue for the production of clean and storable energy in t...
International audienceVisible light-driven water splitting performed within a photoelectrochemical c...
The work presented in this thesis aims at studying the photoelectrochemical properties of conjugated...
We report ultrathin organic photovoltaic elements optimized to run photofaradaic reactions in biolog...
Hydrogen peroxide is one of the most important industrial chemicals and there is great demand for th...
Solar-driven photocatalytic production of hydrogen peroxide (H2O2) requires only sunlight, oxygen, a...
Organic semiconductors hold promise to enable scalable, low-cost and high-performance artificial pho...