International audienceElectrochemical synthesis of NH3 is a carbon-free alternative to the traditional Haber-Bosch process. Obtaining NH3 from environmental pollutants, such as nitrates or nitrites, is a more practical route than from the nitrogen reduction reaction (NRR) due to the difficult cleavage of the inert triple bond of nitrogen gas. Here, we report a novel heterogeneous catalyst based on iron (Fe) single-atoms supported on two-dimensional MoS2 (Fe-MoS2) for the nitrate reduction reaction (NO3RR). Fe-MoS2 exhibits remarkable performance with a maximum Faradai
The preparation process of industrial Fe-based catalysts for ammonia synthesis involves energy-inten...
Electrochemical conversion of NO3– into NH3 (NO3RR) holds an enormous prospect to simultaneously yie...
The electrocatalytic nitrogen reduction reaction (NRR) is a promising strategy to generate NH3 in mi...
Electrochemical synthesis of NH3 is a carbon-free alternative to the traditional Haber–Bosch process...
Electrochemical N2 reduction reaction (NRR) has long been regarded as a promising process to generat...
Nitrogen can be electrochemically reduced to produce ammonia, which supplies an energy-saving and en...
The industrial artificial fixation of atmospheric N-2 to NH3 is carried out using the Haber-Bosch pr...
The catalytic synthesis of NH3 from the thermodynamically challenging N2 reduction reaction under mi...
Electrochemical N2 reduction reaction (NRR) emerges as a highly attractive alternative to the Haber-...
The discovery of stable and noble-metal-free catalysts toward efficient electrochemical reduction of...
The catalytic synthesis of NH3 from the thermodynamically challenging N2 reduction reaction under mi...
Electrocatalytic NO-to-NH3 conversion (NORR) provides a fascinating route toward the eco-friendly an...
Nitrate reduction reaction in an electrochemical system has recently supplied us with a new pathway ...
Ammonia (NH(3)) is an ideal carbon-free power source in the future sustainable hydrogen economy for ...
Based on the structure of the nitrogenase FeMo cofactor (FeMoco), it is reported that Fe deposited o...
The preparation process of industrial Fe-based catalysts for ammonia synthesis involves energy-inten...
Electrochemical conversion of NO3– into NH3 (NO3RR) holds an enormous prospect to simultaneously yie...
The electrocatalytic nitrogen reduction reaction (NRR) is a promising strategy to generate NH3 in mi...
Electrochemical synthesis of NH3 is a carbon-free alternative to the traditional Haber–Bosch process...
Electrochemical N2 reduction reaction (NRR) has long been regarded as a promising process to generat...
Nitrogen can be electrochemically reduced to produce ammonia, which supplies an energy-saving and en...
The industrial artificial fixation of atmospheric N-2 to NH3 is carried out using the Haber-Bosch pr...
The catalytic synthesis of NH3 from the thermodynamically challenging N2 reduction reaction under mi...
Electrochemical N2 reduction reaction (NRR) emerges as a highly attractive alternative to the Haber-...
The discovery of stable and noble-metal-free catalysts toward efficient electrochemical reduction of...
The catalytic synthesis of NH3 from the thermodynamically challenging N2 reduction reaction under mi...
Electrocatalytic NO-to-NH3 conversion (NORR) provides a fascinating route toward the eco-friendly an...
Nitrate reduction reaction in an electrochemical system has recently supplied us with a new pathway ...
Ammonia (NH(3)) is an ideal carbon-free power source in the future sustainable hydrogen economy for ...
Based on the structure of the nitrogenase FeMo cofactor (FeMoco), it is reported that Fe deposited o...
The preparation process of industrial Fe-based catalysts for ammonia synthesis involves energy-inten...
Electrochemical conversion of NO3– into NH3 (NO3RR) holds an enormous prospect to simultaneously yie...
The electrocatalytic nitrogen reduction reaction (NRR) is a promising strategy to generate NH3 in mi...