Artificial photosynthesis, mimicking nature in its efforts to store solar energy, has received considerable attention from the research community. Most of these attempts target the production of H-2 as a fuel and our group recently demonstrated solar-to-hydrogen conversion at 12.3% efficiency. Here, in an effort to take this approach closer to real photosynthesis, which is based on the conversion of CO2, we demonstrate the efficient reduction of CO2 to carbon monoxide driven solely by simulated sunlight using water as the electron source. Employing series-connected perovskite photovoltaics and high-performance catalyst electrodes, we reach a solar-to-CO efficiency exceeding 6.5%, which represents a new benchmark in sunlight-driven CO2 conve...
Sunlight is an abundant and clean energy source, the harvesting of which could make a significant co...
Hydrogen sulfide (H<sub>2</sub>S) has been considered as a potential hydrogen source. Identifying ef...
Benchmark solar to hydrogen conversion efficiency of 18.7% was achieved via photovoltaic cell- elect...
Artificial photosynthesis, mimicking nature in its efforts to store solar energy, has received consi...
Storing solar energy in chemical bonds is an effective strategy to overcome the intermittency of sun...
Storing solar energy in chemical bonds is an effective strategy to overcome the intermittency of sun...
Storing solar energy in chemical bonds is an effective strategy to overcome the intermittency of sun...
Storing solar energy in chemical bonds is an effective strategy to overcome the intermittency of sun...
Storing solar energy in chemical bonds is an effective strategy to overcome the intermittency of sun...
Solar fuel production, mimicking natural photosynthesis of converting CO2 into useful fuels and stor...
The design of efficient photocatalytic devices is of great significance to achieve low-cost carbon d...
Semi-artificial photoelectrochemistry can combine state-of-the-art photovoltaic light-absorbers with...
Due to greenhouse gas emissions, CO2 capture and utilization (CCU) technologies are being immensely ...
Water photoelectrolysis has the potential to produce renewable hydrogen fuel, therefore addressing t...
Water photoelectrolysis has the potential to produce renewable hydrogen fuel, therefore addressing t...
Sunlight is an abundant and clean energy source, the harvesting of which could make a significant co...
Hydrogen sulfide (H<sub>2</sub>S) has been considered as a potential hydrogen source. Identifying ef...
Benchmark solar to hydrogen conversion efficiency of 18.7% was achieved via photovoltaic cell- elect...
Artificial photosynthesis, mimicking nature in its efforts to store solar energy, has received consi...
Storing solar energy in chemical bonds is an effective strategy to overcome the intermittency of sun...
Storing solar energy in chemical bonds is an effective strategy to overcome the intermittency of sun...
Storing solar energy in chemical bonds is an effective strategy to overcome the intermittency of sun...
Storing solar energy in chemical bonds is an effective strategy to overcome the intermittency of sun...
Storing solar energy in chemical bonds is an effective strategy to overcome the intermittency of sun...
Solar fuel production, mimicking natural photosynthesis of converting CO2 into useful fuels and stor...
The design of efficient photocatalytic devices is of great significance to achieve low-cost carbon d...
Semi-artificial photoelectrochemistry can combine state-of-the-art photovoltaic light-absorbers with...
Due to greenhouse gas emissions, CO2 capture and utilization (CCU) technologies are being immensely ...
Water photoelectrolysis has the potential to produce renewable hydrogen fuel, therefore addressing t...
Water photoelectrolysis has the potential to produce renewable hydrogen fuel, therefore addressing t...
Sunlight is an abundant and clean energy source, the harvesting of which could make a significant co...
Hydrogen sulfide (H<sub>2</sub>S) has been considered as a potential hydrogen source. Identifying ef...
Benchmark solar to hydrogen conversion efficiency of 18.7% was achieved via photovoltaic cell- elect...