Solar-driven reduction of carbon dioxide represents a carbon-neutral pathway for the synthesis of fuels and chemicals. We report here results for solar-driven CO₂ reduction using a gas diffusion electrode (GDE) directly powered by a photovoltaic cell. A GaInP/GaInAs/Ge triple-junction photovoltaic cell was used to power a reverse-assembled gas diffusion electrode employing a Ag nanoparticle catalyst layer. The device had a solar-to-CO energy conversion efficiency of 19.1% under simulated AM 1.5G illumination at 1 Sun. The use of a reverse-assembled GDE prevented transition from a wetted to a flooded catalyst bed and allowed the device to operate stably for >150 h with no loss in efficiency. Outdoor measurements were performed under ambient ...
The conversion of carbon dioxide (CO2) into value-added chemicals and fuels, preferably using renewa...
Thermodynamic, achievable, and realistic efficiency limits of solar-driven electrochemical conversio...
Thermodynamic, achievable, and realistic efficiency limits of solar-driven electrochemical conversio...
Solar-driven reduction of carbon dioxide represents a carbon-neutral pathway for the synthesis of fu...
[eng] Growing global emission of carbon dioxide gas (CO2) reflects the world’s energy dependence ...
Growing global emission of carbon dioxide gas (CO2) reflects the world’s energy dependence on fossil...
Growing global emission of carbon dioxide gas (CO2) reflects the world’s energy dependence on fossil...
Photo-electrochemical production of solar fuels from carbon dioxide, water, and sunlight is an appea...
One of the main challenges towards achieving high-efficiency solar-fuel generators performing CO2 re...
The conversion of carbon dioxide (CO) into value-added chemicals and fuels, preferably using renewab...
The conversion of carbon dioxide (CO2) into value-added chemicals and fuels, preferably using renewa...
A solar-driven CO_2 reduction (CO_2R) cell was constructed, consisting of a tandem GaAs/InGaP/TiO_2/...
The conversion of carbon dioxide into value-added products using sunlight, also called artificial ph...
A solar-driven CO_2 reduction (CO_2R) cell was constructed, consisting of a tandem GaAs/InGaP/TiO_2/...
A solar-driven CO_2 reduction (CO_2R) cell was constructed, consisting of a tandem GaAs/InGaP/TiO_2/...
The conversion of carbon dioxide (CO2) into value-added chemicals and fuels, preferably using renewa...
Thermodynamic, achievable, and realistic efficiency limits of solar-driven electrochemical conversio...
Thermodynamic, achievable, and realistic efficiency limits of solar-driven electrochemical conversio...
Solar-driven reduction of carbon dioxide represents a carbon-neutral pathway for the synthesis of fu...
[eng] Growing global emission of carbon dioxide gas (CO2) reflects the world’s energy dependence ...
Growing global emission of carbon dioxide gas (CO2) reflects the world’s energy dependence on fossil...
Growing global emission of carbon dioxide gas (CO2) reflects the world’s energy dependence on fossil...
Photo-electrochemical production of solar fuels from carbon dioxide, water, and sunlight is an appea...
One of the main challenges towards achieving high-efficiency solar-fuel generators performing CO2 re...
The conversion of carbon dioxide (CO) into value-added chemicals and fuels, preferably using renewab...
The conversion of carbon dioxide (CO2) into value-added chemicals and fuels, preferably using renewa...
A solar-driven CO_2 reduction (CO_2R) cell was constructed, consisting of a tandem GaAs/InGaP/TiO_2/...
The conversion of carbon dioxide into value-added products using sunlight, also called artificial ph...
A solar-driven CO_2 reduction (CO_2R) cell was constructed, consisting of a tandem GaAs/InGaP/TiO_2/...
A solar-driven CO_2 reduction (CO_2R) cell was constructed, consisting of a tandem GaAs/InGaP/TiO_2/...
The conversion of carbon dioxide (CO2) into value-added chemicals and fuels, preferably using renewa...
Thermodynamic, achievable, and realistic efficiency limits of solar-driven electrochemical conversio...
Thermodynamic, achievable, and realistic efficiency limits of solar-driven electrochemical conversio...