The reactants for ammonia synthesis have been studied, employing density functional theory (DFT), with respect to their adsorption on tantalum nitride surfaces. The adsorption of nitrogen was found to be mostly molecular and non-activated with side-on, end-on and tilt configurations. At bridging nitrogen sites (Ta–N–Ta) it results in an azide functional group formation with a formation energy of 205 kJ mol−1. H2 was found also to chemisorb molecularly with an adsorption energy in the range −81 to −91 kJ mol−1. At bridging nitrogen sites it adsorbs dissociatively forming >NH groups with an exothermic formation energy of −175 kJ mol−1 per H2. The nitrogen vacancy formation energies were relatively high compared to other metal nitrides found t...
Co3Mo3N is one of the most active catalysts for ammonia synthesis; however, little is known about th...
Dispersion-corrected periodic DFT calculations have been applied to elucidate the Langmuir–Hinshelwo...
Co3Mo3N is one of the most active catalysts for ammonia synthesis, however, little is known about th...
The reactants for ammonia synthesis have been studied, employing density functional theory (DFT), wi...
The reactants for ammonia synthesis have been studied, employing density functional theory (DFT), wi...
The reactants for ammonia synthesis have been studied, employing density functional theory (DFT), wi...
Cobalt molybdenum nitride (Co3Mo3N) is one of the most active catalysts for ammonia synthesis, altho...
Cobalt molybdenum nitride (Co3Mo3N) is one of the most active catalysts for ammonia synthesis, altho...
A comprehensive mechanistic insight into the photocatalytic reduction of CO2 by H2O is indispensable...
Co3Mo3N is one of the most active catalysts for ammonia synthesis; however, little is known about th...
Ta3-xMxNy (M = Re, Fe, Co; x = 0, 0.25, 0.5, 1) materials with different microstructural features (e...
Identification of the structure sensitivity of nitrogen molecule (N2) activation and ammonia synthes...
In this review, we present the recent progress in ammonia synthesis research using density functiona...
Identification of the structure sensitivity of nitrogen molecule (N-2) activation and ammonia synthe...
In this perspective we present recent experimental and computational progress in catalytic ammonia s...
Co3Mo3N is one of the most active catalysts for ammonia synthesis; however, little is known about th...
Dispersion-corrected periodic DFT calculations have been applied to elucidate the Langmuir–Hinshelwo...
Co3Mo3N is one of the most active catalysts for ammonia synthesis, however, little is known about th...
The reactants for ammonia synthesis have been studied, employing density functional theory (DFT), wi...
The reactants for ammonia synthesis have been studied, employing density functional theory (DFT), wi...
The reactants for ammonia synthesis have been studied, employing density functional theory (DFT), wi...
Cobalt molybdenum nitride (Co3Mo3N) is one of the most active catalysts for ammonia synthesis, altho...
Cobalt molybdenum nitride (Co3Mo3N) is one of the most active catalysts for ammonia synthesis, altho...
A comprehensive mechanistic insight into the photocatalytic reduction of CO2 by H2O is indispensable...
Co3Mo3N is one of the most active catalysts for ammonia synthesis; however, little is known about th...
Ta3-xMxNy (M = Re, Fe, Co; x = 0, 0.25, 0.5, 1) materials with different microstructural features (e...
Identification of the structure sensitivity of nitrogen molecule (N2) activation and ammonia synthes...
In this review, we present the recent progress in ammonia synthesis research using density functiona...
Identification of the structure sensitivity of nitrogen molecule (N-2) activation and ammonia synthe...
In this perspective we present recent experimental and computational progress in catalytic ammonia s...
Co3Mo3N is one of the most active catalysts for ammonia synthesis; however, little is known about th...
Dispersion-corrected periodic DFT calculations have been applied to elucidate the Langmuir–Hinshelwo...
Co3Mo3N is one of the most active catalysts for ammonia synthesis, however, little is known about th...