Abstract: We report detailed density functional theory (DFT) calculations of important mechanisms in the methanol to gasoline (MTG) process in a zeolite catalyst. Various reaction paths and energy barriers involving C-O bond cleavage and the first C-C bond formation are investigated in detail using all-electron periodic supercell calculations and recently developed geometry optimization and transition state search algorithms. We have further investigated the formation of ethanol and have identified a different mechanism than previously reported [1], a reaction where water does not play any visible role. Contrary to recent cluster calculations, we were not able to find a stable surface ylide structure. However, a stable ylide structure built...
Density functional theory is used to determine transition states and the corresponding energy barrie...
The methanol-to-hydrocarbon process is known to proceed autocatalytically in H-ZSM-5 after an induct...
The methanol-to-olefin process is a showcase example of complex zeolite-catalyzed chemistry. At real...
Abstract: We report detailed density functional theory (DFT) calculations of important mechanisms in...
Density functional theory is used to study one of the most successful routes to the production of sy...
\u3cp\u3eQuantum chemical calculations on the mechanism of the β-scission reaction in zeolites were ...
Quantum chemical calculations on the mechanism of the β-scission reaction in zeolites were performed...
Methanol-to-Olefins (MTO) conversion over acidic zeolite catalysts has become the most important non...
We report a theoretical investigation of the initiation of the methanol to olefin process, where we ...
In the search for greener and cheaper manufacturing routines for the key chemical compounds ethylene...
The rapidly increasing demand of oil-based chemicals calls for the development of new technologies b...
A theoretical study of the alkylation reaction of toluene with methanol catalyzed by the acidic Mord...
Density functional theory is used to determine transition states and the corresponding energy barrie...
The methanol-to-olefin process is a showcase example of complex zeolite-catalyzed chemistry. At real...
Density functional theory is used to determine transition states and the corresponding energy barrie...
The methanol-to-hydrocarbon process is known to proceed autocatalytically in H-ZSM-5 after an induct...
The methanol-to-olefin process is a showcase example of complex zeolite-catalyzed chemistry. At real...
Abstract: We report detailed density functional theory (DFT) calculations of important mechanisms in...
Density functional theory is used to study one of the most successful routes to the production of sy...
\u3cp\u3eQuantum chemical calculations on the mechanism of the β-scission reaction in zeolites were ...
Quantum chemical calculations on the mechanism of the β-scission reaction in zeolites were performed...
Methanol-to-Olefins (MTO) conversion over acidic zeolite catalysts has become the most important non...
We report a theoretical investigation of the initiation of the methanol to olefin process, where we ...
In the search for greener and cheaper manufacturing routines for the key chemical compounds ethylene...
The rapidly increasing demand of oil-based chemicals calls for the development of new technologies b...
A theoretical study of the alkylation reaction of toluene with methanol catalyzed by the acidic Mord...
Density functional theory is used to determine transition states and the corresponding energy barrie...
The methanol-to-olefin process is a showcase example of complex zeolite-catalyzed chemistry. At real...
Density functional theory is used to determine transition states and the corresponding energy barrie...
The methanol-to-hydrocarbon process is known to proceed autocatalytically in H-ZSM-5 after an induct...
The methanol-to-olefin process is a showcase example of complex zeolite-catalyzed chemistry. At real...