The catalytic synthesis of NH3 from the thermodynamically challenging N2 reduction reaction under mild conditions is currently a significant problem for scientists. Accordingly, herein, we report the development of a nitrogenase-inspired inorganic-based chalcogenide system for the efficient electrochemical conversion of N2 to NH3, which is comprised of the basic structure of [Fe–S2–Mo]. This material showed high activity of 8.7 mgNH3 mgFe−1 h−1 (24 μgNH3 cm−2 h−1) with an excellent faradaic efficiency of 27% for the conversion of N2 to NH3 in aqueous medium. It was demonstrated that the Fe1 single atom on [Fe–S2–Mo] under the optimal negative potential favors the reduction of N2 to NH3 over the competitive proton reduction to H2. Operando X...
Using density functional theory (DFT) calculations, we explored the potential of defective MoS2 shee...
The rate-limiting step for ammonia (NH3) production via the Haber-Bosch process is the dissociation ...
Demand for ammonia continues to increase to sustain the growing global population. The direct electr...
The catalytic synthesis of NH3 from the thermodynamically challenging N2 reduction reaction under mi...
The catalytic synthesis of NH3 from the thermodynamically challenging N2 reduction reaction under mi...
notrogenase is the only enzyme known to catalyze the reduction of N2 to 2NH3. In vivo, the MoFe prot...
The electrocatalytic nitrogen reduction reaction (NRR) is a promising strategy to generate NH3 in mi...
The reduction of nitrogen (N_2) to ammonia (NH_3) is a requisite transformation for life. Although i...
The nitrogen-to-ammonia conversion is one of the most important and challenging processes in chemist...
Ammonia (NH3), one of the basic chemicals in most fertilizers and a promising carbon-free energy sto...
Ammonia (NH₃), one of the basic chemicals in most fertilizers and a promising carbon-free energy sto...
The activation of Fe-coordinated N2 via the formal addition of hydrogen atom equivalents is explored...
The Haber-Bosh process is currently potent for ammonia (NH3) production at a high rate but is an ene...
Electrochemical N2 reduction reaction (NRR) emerges as a highly attractive alternative to the Haber-...
Biological N_2 fixation to NH_3 may proceed at one or more Fe sites in the active-site cofactors of ...
Using density functional theory (DFT) calculations, we explored the potential of defective MoS2 shee...
The rate-limiting step for ammonia (NH3) production via the Haber-Bosch process is the dissociation ...
Demand for ammonia continues to increase to sustain the growing global population. The direct electr...
The catalytic synthesis of NH3 from the thermodynamically challenging N2 reduction reaction under mi...
The catalytic synthesis of NH3 from the thermodynamically challenging N2 reduction reaction under mi...
notrogenase is the only enzyme known to catalyze the reduction of N2 to 2NH3. In vivo, the MoFe prot...
The electrocatalytic nitrogen reduction reaction (NRR) is a promising strategy to generate NH3 in mi...
The reduction of nitrogen (N_2) to ammonia (NH_3) is a requisite transformation for life. Although i...
The nitrogen-to-ammonia conversion is one of the most important and challenging processes in chemist...
Ammonia (NH3), one of the basic chemicals in most fertilizers and a promising carbon-free energy sto...
Ammonia (NH₃), one of the basic chemicals in most fertilizers and a promising carbon-free energy sto...
The activation of Fe-coordinated N2 via the formal addition of hydrogen atom equivalents is explored...
The Haber-Bosh process is currently potent for ammonia (NH3) production at a high rate but is an ene...
Electrochemical N2 reduction reaction (NRR) emerges as a highly attractive alternative to the Haber-...
Biological N_2 fixation to NH_3 may proceed at one or more Fe sites in the active-site cofactors of ...
Using density functional theory (DFT) calculations, we explored the potential of defective MoS2 shee...
The rate-limiting step for ammonia (NH3) production via the Haber-Bosch process is the dissociation ...
Demand for ammonia continues to increase to sustain the growing global population. The direct electr...