The full catalytic cycle for the self-metathesis of ethane was studied by density functional theory (DFT). The active site was a Ta-dihydride grafted on a Bronsted acid site [( AlO)(2)Ta(H-2)] of the internal pore surface of the FER zeolite. The transition state geometries and activation energies were determined through the nudged elastic band (NEB) method for each elementary step, and the complete cycle was found to be thermodynamically consistent. Investigated elementary steps include ethane C-H sigma-bond activation, ethylene desorption through alpha and beta hydrogen elimination mechanisms, Ta-ethylcarbene formation, olefin metathesis, and hydrogenation of olefin metathesis products. For the activation of ethane, as compared to catalyti...
The catalytic dehydrogenation of ethane over gallyl ions (GaO+) as a model for the active sites in o...
The metathesis of alkanes is a process in which a given alkane is transformed into higher and lower ...
During the past decade, quantum-chemical calculations have been used to model hydrocarbon reactions ...
The full catalytic cycle for the self-metathesis of ethane was studied by density functional theory ...
Alkane metathesis transforms small alkanes into their higher and lower homologues. The reaction is c...
Alkane metathesis transforms small alkanes into their higher and lower homologues. The reaction is c...
The stability of various gallium species (Ga+, , and GaH+2) as models for the active sites in reduce...
The mechanism of hydrogenolysis of alkanes, promoted by Ta-hydrides supported on silica via 2 Si-O-...
The mechanism of hydrogenolysis of alkanes, promoted by Ta-hydrides supported on silica via 2 Si–O–...
Density functional theory is used to determine transition states and the corresponding energy barrie...
Density functional theory is used to determine transition states and the corresponding energy barrie...
Abstract: We report detailed density functional theory (DFT) calculations of important mechanisms in...
Methanol-to-Olefins (MTO) conversion over acidic zeolite catalysts has become the most important non...
Density functional theory calculations were utilized to study the reaction mechanisms of nonoxidativ...
Shape selective zeolite-based catalysts have several applications in the industrial hydrocarbon proc...
The catalytic dehydrogenation of ethane over gallyl ions (GaO+) as a model for the active sites in o...
The metathesis of alkanes is a process in which a given alkane is transformed into higher and lower ...
During the past decade, quantum-chemical calculations have been used to model hydrocarbon reactions ...
The full catalytic cycle for the self-metathesis of ethane was studied by density functional theory ...
Alkane metathesis transforms small alkanes into their higher and lower homologues. The reaction is c...
Alkane metathesis transforms small alkanes into their higher and lower homologues. The reaction is c...
The stability of various gallium species (Ga+, , and GaH+2) as models for the active sites in reduce...
The mechanism of hydrogenolysis of alkanes, promoted by Ta-hydrides supported on silica via 2 Si-O-...
The mechanism of hydrogenolysis of alkanes, promoted by Ta-hydrides supported on silica via 2 Si–O–...
Density functional theory is used to determine transition states and the corresponding energy barrie...
Density functional theory is used to determine transition states and the corresponding energy barrie...
Abstract: We report detailed density functional theory (DFT) calculations of important mechanisms in...
Methanol-to-Olefins (MTO) conversion over acidic zeolite catalysts has become the most important non...
Density functional theory calculations were utilized to study the reaction mechanisms of nonoxidativ...
Shape selective zeolite-based catalysts have several applications in the industrial hydrocarbon proc...
The catalytic dehydrogenation of ethane over gallyl ions (GaO+) as a model for the active sites in o...
The metathesis of alkanes is a process in which a given alkane is transformed into higher and lower ...
During the past decade, quantum-chemical calculations have been used to model hydrocarbon reactions ...