Electrocatalytic NO-to-NH3 conversion (NORR) provides a fascinating route toward the eco-friendly and valuable production of NH3. In this study, amorphous FeS2 (a-FeS2) is first demonstrated as a high-efficiency catalyst for the NORR, showing a maximum FENH3 of 92.5% with a corresponding NH3 yield rate of 227.1 μmol h–1 cm–2, outperforming most NORR catalysts reported earlier. Experimental measurements combined with theoretical computations clarify that the exceptional NORR activity of a-FeS2 originates from the amorphization-induced upshift of the d-band center to promote the NO activation and NO-to-NH3 hydrogenation energetics
The electrochemical N 2 reduction reaction (NRR) offers a direct pathway to produce NH 3 from renewa...
The industrial artificial fixation of atmospheric N-2 to NH3 is carried out using the Haber-Bosch pr...
Ammonia (NH(3)) is an ideal carbon-free power source in the future sustainable hydrogen economy for ...
Electrochemical synthesis of NH3 is a carbon-free alternative to the traditional Haber–Bosch process...
Electrochemical conversion of NO3– into NH3 (NO3RR) holds an enormous prospect to simultaneously yie...
Electrochemical reduction of N2 to NH3 under ambient conditions can provide an alternative to the Ha...
Electrochemical reduction of N2 to NH3 under ambient conditions can provide an alternative to the Ha...
The discovery of stable and noble-metal-free catalysts toward efficient electrochemical reduction of...
Electrochemical N2 reduction reaction (NRR) has long been regarded as a promising process to generat...
The catalytic synthesis of NH3 from the thermodynamically challenging N2 reduction reaction under mi...
International audienceElectrochemical synthesis of NH3 is a carbon-free alternative to the tradition...
The electrochemical conversion of nitric oxide (NO) to ammonia (NH3) provides a sustainable route to...
Electrochemical N2 reduction reaction (NRR) emerges as a highly attractive alternative to the Haber-...
International audienceAmmonia (NH3) is a major feedstock of the chemical industry. The imperious nee...
The electrochemical N2 reduction reaction (NRR) offers a direct pathway to produce NH3 from renewabl...
The electrochemical N 2 reduction reaction (NRR) offers a direct pathway to produce NH 3 from renewa...
The industrial artificial fixation of atmospheric N-2 to NH3 is carried out using the Haber-Bosch pr...
Ammonia (NH(3)) is an ideal carbon-free power source in the future sustainable hydrogen economy for ...
Electrochemical synthesis of NH3 is a carbon-free alternative to the traditional Haber–Bosch process...
Electrochemical conversion of NO3– into NH3 (NO3RR) holds an enormous prospect to simultaneously yie...
Electrochemical reduction of N2 to NH3 under ambient conditions can provide an alternative to the Ha...
Electrochemical reduction of N2 to NH3 under ambient conditions can provide an alternative to the Ha...
The discovery of stable and noble-metal-free catalysts toward efficient electrochemical reduction of...
Electrochemical N2 reduction reaction (NRR) has long been regarded as a promising process to generat...
The catalytic synthesis of NH3 from the thermodynamically challenging N2 reduction reaction under mi...
International audienceElectrochemical synthesis of NH3 is a carbon-free alternative to the tradition...
The electrochemical conversion of nitric oxide (NO) to ammonia (NH3) provides a sustainable route to...
Electrochemical N2 reduction reaction (NRR) emerges as a highly attractive alternative to the Haber-...
International audienceAmmonia (NH3) is a major feedstock of the chemical industry. The imperious nee...
The electrochemical N2 reduction reaction (NRR) offers a direct pathway to produce NH3 from renewabl...
The electrochemical N 2 reduction reaction (NRR) offers a direct pathway to produce NH 3 from renewa...
The industrial artificial fixation of atmospheric N-2 to NH3 is carried out using the Haber-Bosch pr...
Ammonia (NH(3)) is an ideal carbon-free power source in the future sustainable hydrogen economy for ...