Methanol adsorption and dehydration reactions within zeolites represent important steps in the catalytic conversion process to form long-chain hydrocarbons. Herein, first-principles density functional theory (DFT) is employed in the determination of methanol adsorption and conversion in ferrierite (FER), where we predict the fundamental adsorption geometries and energetics of methanol adsorption. The methanol molecule is shown to physisorb at all explored binding sites, stabilized through hydrogen-bonded interactions with the acid site atOmeth—Hfram bond distances ranging from1.33–1.51 Å.We demonstrate that the zeolites’ adsorption capability is affected by the silicon/aluminium ratio, with stronger adsorptions predicted in the material wit...
The interaction between methanol and the Heulandite-type zeolite has been unveiled to give an atomic...
We evaluate the effect of the number of methanol molecules per acidic site of H-ZSM-5 on the methox...
Density functional theory is used to study one of the most successful routes to the production of sy...
Methanol adsorption and dehydration reactions within zeolites represent important steps in the catal...
Methanol adsorption and dehydration reactions within zeolites represent important steps in the catal...
Density functional theory is used to determine the modes of adsorption at low and high coverage of m...
Density functional theory is used to study the zeolite acid catalyzed methanol dehydration to dimeth...
The transformation of methanol-to-hydrocarbons (MTH) has significant potential as a route to synthes...
Density functional theory is used to determine transition states, adsorption, and dissociative compl...
The adsorption and dehydrogenation of methanol on an alkali-cation-exchanged zeolite model, M-zeolit...
The desorption of methanol and dimethyl ether has been studied over fresh and hydrocarbon-occluded Z...
The desorption of methanol and dimethyl ether has been studied over fresh and hydrocarbon-occluded Z...
The interaction between methanol and the Heulandite-type zeolite has been unveiled to give an atomic...
We evaluate the effect of the number of methanol molecules per acidic site of H-ZSM-5 on the methox...
Density functional theory is used to study one of the most successful routes to the production of sy...
Methanol adsorption and dehydration reactions within zeolites represent important steps in the catal...
Methanol adsorption and dehydration reactions within zeolites represent important steps in the catal...
Density functional theory is used to determine the modes of adsorption at low and high coverage of m...
Density functional theory is used to study the zeolite acid catalyzed methanol dehydration to dimeth...
The transformation of methanol-to-hydrocarbons (MTH) has significant potential as a route to synthes...
Density functional theory is used to determine transition states, adsorption, and dissociative compl...
The adsorption and dehydrogenation of methanol on an alkali-cation-exchanged zeolite model, M-zeolit...
The desorption of methanol and dimethyl ether has been studied over fresh and hydrocarbon-occluded Z...
The desorption of methanol and dimethyl ether has been studied over fresh and hydrocarbon-occluded Z...
The interaction between methanol and the Heulandite-type zeolite has been unveiled to give an atomic...
We evaluate the effect of the number of methanol molecules per acidic site of H-ZSM-5 on the methox...
Density functional theory is used to study one of the most successful routes to the production of sy...