The dehydrogenation and dehydration of formic acid is investigated on the β-Mo2C (100) catalyst surface using time independent density functional theory. The energetics of the two mechanisms are calculated, and the thermochemistry and kinetics are discussed using the transition state theory. Subsequently, microkinetic modelling of the system is conducted, considering the batch reactor model. The potential energy landscape of the reaction shows a thermodynamically favourable cleavage of Hsingle bondCOOH to form CO; however, the kinetics show that the dehydrogenation mechanism is faster and CO2 is continuously formed. The effect of HCOOH adsorption on the surface is also analysed, in a temperature-programmed desorption, with the conversion pr...
Mo₂C catalysts supported on carbon have been investigated for use in hydrotreating reactions that re...
Transition metal carbides (TMC) have intriguing physical and chemical properties, especially when st...
Molybdenum carbides are increasingly used in heterogeneously catalyzed hydrogenation reactions, whic...
The dehydrogenation and dehydration of formic acid is investigated on the β-Mo2C (100) catalyst surf...
Viable alternatives to scarce and expensive noble-metal-based catalysts are transition-metal carbide...
The effect of the gas-phase chemical potential on surface chemistry and reactivity of molybdenum car...
High surface area carbon aerogels with increasing molybdenum content were obtained by carbonization ...
Molybdenum carbides are considered as promising replacements for expensive noble metal catalysts in ...
Formic acid can undergo dehydration or dehydrogenation with variable selectivity over a range of met...
The hydrodeoxygenation of guaiacol is modelled over a (100) β-Mo2C surface using density functional ...
A two-step bio-oil upgrading process has been investigated using carbon supported molybdenum carbide...
The adsorption and activation of a CO2 molecule on cubic d-MoC(001) and orthorhombic b-Mo2C(001) sur...
Carbothermal hydrogen reduction (CHR) of ammonium heptamolybdate impregnated activated charcoal (AC)...
Understanding the deactivation of transition-metal carbide catalysts during hydrodeoxygenation (HDO)...
Methane is an abundant resource existing in the form of natural and shale gas, and molybdenum-based ...
Mo₂C catalysts supported on carbon have been investigated for use in hydrotreating reactions that re...
Transition metal carbides (TMC) have intriguing physical and chemical properties, especially when st...
Molybdenum carbides are increasingly used in heterogeneously catalyzed hydrogenation reactions, whic...
The dehydrogenation and dehydration of formic acid is investigated on the β-Mo2C (100) catalyst surf...
Viable alternatives to scarce and expensive noble-metal-based catalysts are transition-metal carbide...
The effect of the gas-phase chemical potential on surface chemistry and reactivity of molybdenum car...
High surface area carbon aerogels with increasing molybdenum content were obtained by carbonization ...
Molybdenum carbides are considered as promising replacements for expensive noble metal catalysts in ...
Formic acid can undergo dehydration or dehydrogenation with variable selectivity over a range of met...
The hydrodeoxygenation of guaiacol is modelled over a (100) β-Mo2C surface using density functional ...
A two-step bio-oil upgrading process has been investigated using carbon supported molybdenum carbide...
The adsorption and activation of a CO2 molecule on cubic d-MoC(001) and orthorhombic b-Mo2C(001) sur...
Carbothermal hydrogen reduction (CHR) of ammonium heptamolybdate impregnated activated charcoal (AC)...
Understanding the deactivation of transition-metal carbide catalysts during hydrodeoxygenation (HDO)...
Methane is an abundant resource existing in the form of natural and shale gas, and molybdenum-based ...
Mo₂C catalysts supported on carbon have been investigated for use in hydrotreating reactions that re...
Transition metal carbides (TMC) have intriguing physical and chemical properties, especially when st...
Molybdenum carbides are increasingly used in heterogeneously catalyzed hydrogenation reactions, whic...