Semiconductor photoelectrodes can be used to synthesize urea from carbon dioxide and nitrate under solar light. We find that GaN nanowires (NWs) have inherent catalytic activity for nitrate conversion to nitrite, while Ag cocatalysts loaded onto GaN NWs further promote the performance of photoelectrochemical urea synthesis. Under optimized conditions, a high faradaic efficiency of 75.6 ± 2.6% was achieved at a potential of −0.3 vs reversible hydrogen electrode. Control experiments and theoretical calculations suggest that the high selectivity of urea originates from the facilitated C–N coupling between key intermediates of NO2 and COO– at an early stage of the reduction reaction. This work demonstrates the potential of GaN NWs with loaded A...
The photochemical reduction of carbon dioxide (CO<sub>2</sub>) into energy-rich products can potenti...
We present the photoelectrochemical (PEC) water-splitting properties of pristine and reduced graphen...
As a class of key building blocks in the chemical industry, aromatic compounds are mainly derived fr...
The photoelectrochemical (PEC) approach of converting solar energy into fuels holds significant pote...
We report on the first demonstration of high-conversion-rate photochemical reduction of carbon dioxi...
In many heterogeneous catalysts, the interaction of supported metal species with a matrix can alter ...
Solar-driven photocatalytic CO2 conversion is a promising strategy to alleviate the energy crisis an...
International audienceTo reduce the energy cost and environmental impact of biological nitrogen remo...
The photocatalytic activity of GaN nanowires was investigated for the use of GaN nanowires as photoc...
In many heterogeneous catalysts, the interaction of supported metal species with a matrix can alter ...
The conversion of solar energy into hydrogen via water splitting process is one of the key sustainab...
As a new path to "green" ammonia production, photoelectrochemical nitrate reduction reacti...
In many heterogeneous catalysts, the interaction of supported metal species with a matrix can alter ...
We report on the direct conversion of carbon dioxide (CO₂) in a photoelectrochemical cell consisting...
Synthetic nitrogen fertilizer such as urea has been key to increasing crop productivity and feeding ...
The photochemical reduction of carbon dioxide (CO<sub>2</sub>) into energy-rich products can potenti...
We present the photoelectrochemical (PEC) water-splitting properties of pristine and reduced graphen...
As a class of key building blocks in the chemical industry, aromatic compounds are mainly derived fr...
The photoelectrochemical (PEC) approach of converting solar energy into fuels holds significant pote...
We report on the first demonstration of high-conversion-rate photochemical reduction of carbon dioxi...
In many heterogeneous catalysts, the interaction of supported metal species with a matrix can alter ...
Solar-driven photocatalytic CO2 conversion is a promising strategy to alleviate the energy crisis an...
International audienceTo reduce the energy cost and environmental impact of biological nitrogen remo...
The photocatalytic activity of GaN nanowires was investigated for the use of GaN nanowires as photoc...
In many heterogeneous catalysts, the interaction of supported metal species with a matrix can alter ...
The conversion of solar energy into hydrogen via water splitting process is one of the key sustainab...
As a new path to "green" ammonia production, photoelectrochemical nitrate reduction reacti...
In many heterogeneous catalysts, the interaction of supported metal species with a matrix can alter ...
We report on the direct conversion of carbon dioxide (CO₂) in a photoelectrochemical cell consisting...
Synthetic nitrogen fertilizer such as urea has been key to increasing crop productivity and feeding ...
The photochemical reduction of carbon dioxide (CO<sub>2</sub>) into energy-rich products can potenti...
We present the photoelectrochemical (PEC) water-splitting properties of pristine and reduced graphen...
As a class of key building blocks in the chemical industry, aromatic compounds are mainly derived fr...