Co3Mo3N is one of the most active catalysts for ammonia synthesis, however, little is known about the atomistic details of N2 adsorption and activation. Here we examine whether N2 can adsorb and activate at nitrogen surface vacancies. We have identified the most favourable sites for surface nitrogen vacancy formation and have calculated vacancy formation free energies (and concentrations) taking into account vacancy configurational entropy and the entropy of N2 at temperature and pressure conditions relevant to ammonia synthesis (380-550 °C, 100 atm) via a semi-empirical approach. We show that 3-fold hollow bound nitrogen-containing (111)-surfaces have surprisingly high concentrations (1.6×1016 to 3.7×1016 cm-2) of nitrogen vacancies in the...
The conversion of molecular nitrogen to ammonia is a key biological and chemical process and represe...
In this review, we present the recent progress in ammonia synthesis research using density functiona...
The performance of Co3Mo3N, Co3Mo3C and Co6Mo6C for ammonia synthesis has been compared. In contrast...
Co3Mo3N is one of the most active catalysts for ammonia synthesis; however, little is known about th...
Co3Mo3N is one of the most active catalysts for ammonia synthesis; however, little is known about th...
Co<sub>3</sub>Mo<sub>3</sub>N is one of the most active catalysts for ammonia synthesis; however, li...
Cobalt molybdenum nitride (Co3Mo3N) is one of the most active catalysts for ammonia synthesis, altho...
Ammonia (NH3) synthesis is an essential yet energy-demanding industrial process. Hence, there is a n...
Cobalt molybdenum nitride (Co3Mo3N) is one of the most active catalysts for ammonia synthesis, altho...
Dispersion-corrected periodic DFT calculations have been applied to elucidate the Langmuir–Hinshelwo...
In this perspective we present recent experimental and computational progress in catalytic ammonia s...
Recently we reported an Eley–Rideal/Mars–van Krevelen mechanism for ammonia synthesis on cobalt moly...
Periodic and molecular density functional theory calculations have been applied to elucidate the ass...
The conversion of molecular nitrogen to ammonia is a key biological and chemical process and represe...
In this review, we present the recent progress in ammonia synthesis research using density functiona...
The performance of Co3Mo3N, Co3Mo3C and Co6Mo6C for ammonia synthesis has been compared. In contrast...
Co3Mo3N is one of the most active catalysts for ammonia synthesis; however, little is known about th...
Co3Mo3N is one of the most active catalysts for ammonia synthesis; however, little is known about th...
Co<sub>3</sub>Mo<sub>3</sub>N is one of the most active catalysts for ammonia synthesis; however, li...
Cobalt molybdenum nitride (Co3Mo3N) is one of the most active catalysts for ammonia synthesis, altho...
Ammonia (NH3) synthesis is an essential yet energy-demanding industrial process. Hence, there is a n...
Cobalt molybdenum nitride (Co3Mo3N) is one of the most active catalysts for ammonia synthesis, altho...
Dispersion-corrected periodic DFT calculations have been applied to elucidate the Langmuir–Hinshelwo...
In this perspective we present recent experimental and computational progress in catalytic ammonia s...
Recently we reported an Eley–Rideal/Mars–van Krevelen mechanism for ammonia synthesis on cobalt moly...
Periodic and molecular density functional theory calculations have been applied to elucidate the ass...
The conversion of molecular nitrogen to ammonia is a key biological and chemical process and represe...
In this review, we present the recent progress in ammonia synthesis research using density functiona...
The performance of Co3Mo3N, Co3Mo3C and Co6Mo6C for ammonia synthesis has been compared. In contrast...