The development of practical solar-driven electrochemical fuel generators requires the integration of light absorbing and electrochemical components into an architecture that must also provide easy separation of the product fuels. Unfortunately, many of these components are not stable under the extreme pH conditions necessary to facilitate ionic transport between redox reaction sites. By using a controlled recirculating stream across reaction sites, this work demonstrates a stable, self-regulating and continuous purified solar-hydrogen generation from near neutral pH electrolytes that yield continuous nearly pure H-2 streams with solar-fuel efficiencies above 6.2%
The necessity for developing clean energy technology has led to the surge in renewable energy resear...
A monolithically integrated device consisting of a tandem-junction GaAs/InGaP photoanode coated by a...
Solar energy is going to play a crucial role in the future energy scenario of the world that conduct...
Efforts to develop renewable sources of carbon-neutral fuels have brought a renewed focus to researc...
Hydrogen (H2) produced from renewables has a growing impact on the global energy dynamics towards su...
An efficient, stable, and intrinsically safe solar water-splitting device is demonstrated using a II...
The major challenge in solar water splitting to H_{2} and O_{2} is in making a stable and affordable...
Hydrogen (H2) produced from renewables has a growing impact on the global energy dynamics towards su...
The Bigger Picture Electrocatalytic water splitting is a green approach to producing clean H2 fuel, ...
Electrolytic water splitting could potentially provide clean H2 for a future ‘Hydrogen Economy.’ Ho...
Solar technologies hold the potential to ultimately counteract the effects of climate change. Nevert...
Hydrogen is a coveted gas: industry uses it for everything from removing sulfur from crude oil to ma...
The generation of hydrogen from water and sunlight may provide the clean, renewable fuel that solves...
Hydrogen promises to be an attractive transportation fuel in the post-fossil fuel era. Relatively ab...
Photosynthesis is nature’s route to convert intermittent solar irradiation into storable energy, whi...
The necessity for developing clean energy technology has led to the surge in renewable energy resear...
A monolithically integrated device consisting of a tandem-junction GaAs/InGaP photoanode coated by a...
Solar energy is going to play a crucial role in the future energy scenario of the world that conduct...
Efforts to develop renewable sources of carbon-neutral fuels have brought a renewed focus to researc...
Hydrogen (H2) produced from renewables has a growing impact on the global energy dynamics towards su...
An efficient, stable, and intrinsically safe solar water-splitting device is demonstrated using a II...
The major challenge in solar water splitting to H_{2} and O_{2} is in making a stable and affordable...
Hydrogen (H2) produced from renewables has a growing impact on the global energy dynamics towards su...
The Bigger Picture Electrocatalytic water splitting is a green approach to producing clean H2 fuel, ...
Electrolytic water splitting could potentially provide clean H2 for a future ‘Hydrogen Economy.’ Ho...
Solar technologies hold the potential to ultimately counteract the effects of climate change. Nevert...
Hydrogen is a coveted gas: industry uses it for everything from removing sulfur from crude oil to ma...
The generation of hydrogen from water and sunlight may provide the clean, renewable fuel that solves...
Hydrogen promises to be an attractive transportation fuel in the post-fossil fuel era. Relatively ab...
Photosynthesis is nature’s route to convert intermittent solar irradiation into storable energy, whi...
The necessity for developing clean energy technology has led to the surge in renewable energy resear...
A monolithically integrated device consisting of a tandem-junction GaAs/InGaP photoanode coated by a...
Solar energy is going to play a crucial role in the future energy scenario of the world that conduct...