Quantum chemical calculations on the mechanism of the β-scission reaction in zeolites were performed using density functional theory and Hartree-Fock methods. The results obtained indicate that the potential energy surface for this reaction is very complex. Three reaction paths were identified: path RL, one-step via the "ringlike" transition state (TS); path HBCP, via the "hydrogen-bonded" TS and substituted cyclopropane; and path HB, one-step via the "hydrogen-bonded" TS. Transition states in all reaction paths represent complexes of the carbocation-like fragment with the negatively charged cluster, whereas both initial and final states represent alkoxy species with a covalent bond between a carbon atom of the hydrocarbon portion and a zeo...
Results of quantum-chemical modeling of a number of elementary steps involved in the acid zeolite-ca...
Monomolecular reactions of alkanes in H-MFI were investigated by means of a dispersion-corrected den...
A theoretical study of the cracking reaction of thiophene by small zeolitic cluster catalysts is rep...
Quantum chemical calculations on the mechanism of the β-scission reaction in zeolites were performed...
Quantum chemical calculations on the mechanism of the β-scission reaction in zeolites were performed...
The nature of the molecular species involved in the cracking of hydrocarbons into smaller fragments ...
For many years, researchers have been developing theoretical methods of estimating reaction rates an...
Abstract: We report detailed density functional theory (DFT) calculations of important mechanisms in...
During the past decade, quantum-chemical calculations have been used to model hydrocarbon reactions ...
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...
Ab initioquantum chemical methods have been used to study themechanisms for the hydrocarbon conversi...
Protolytic cracking of ethane by zeolites has been studied using quantum-chemical techniques and a c...
Results of quantum-chemical modeling of a number of elementary steps involved in the acid zeolite-ca...
Monomolecular reactions of alkanes in H-MFI were investigated by means of a dispersion-corrected den...
A theoretical study of the cracking reaction of thiophene by small zeolitic cluster catalysts is rep...
Quantum chemical calculations on the mechanism of the β-scission reaction in zeolites were performed...
Quantum chemical calculations on the mechanism of the β-scission reaction in zeolites were performed...
The nature of the molecular species involved in the cracking of hydrocarbons into smaller fragments ...
For many years, researchers have been developing theoretical methods of estimating reaction rates an...
Abstract: We report detailed density functional theory (DFT) calculations of important mechanisms in...
During the past decade, quantum-chemical calculations have been used to model hydrocarbon reactions ...
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...
Ab initioquantum chemical methods have been used to study themechanisms for the hydrocarbon conversi...
Protolytic cracking of ethane by zeolites has been studied using quantum-chemical techniques and a c...
Results of quantum-chemical modeling of a number of elementary steps involved in the acid zeolite-ca...
Monomolecular reactions of alkanes in H-MFI were investigated by means of a dispersion-corrected den...
A theoretical study of the cracking reaction of thiophene by small zeolitic cluster catalysts is rep...