We discuss the role of QM/MM (embedded cluster) computational techniques in catalytic science, in particular their application to microporous catalysis. We describe the methodologies employed and illustrate their utility by briefly summarising work on metal centres in zeolites. We then report a detailed investigation into the behaviour of methanol at acidic sites in zeolites H-ZSM-5 and H-Y in the context of the methanol-to-hydrocarbons/olefins process. Studying key initial steps of the reaction (the adsorption and subsequent methoxylation), we probe the effect of framework topology and Brønsted acid site location on the energetics of these initial processes. We find that although methoxylation is endothermic with respect to the adsorbed sy...
Catalytic conversion of methanol to light olefins (MTO) over acidic zeolites is currently one of the...
Zeolites have a broad spectrum of applications as robust microporous catalysts for various chemical ...
The methanol-to-olefin process is a showcase example of complex zeolite-catalyzed chemistry. At real...
We discuss the role of QM/MM (embedded cluster) computational techniques in catalytic science, in pa...
The transformation of methanol-to-hydrocarbons (MTH) has significant potential as a route to synthes...
Zeolites are amongst the most widely investigated and topical of inorganic materials. They are wide...
The conversion of methanol-to-hydrocarbons (MTH) is known to occur via an autocatalytic process in z...
Zeolites are the most widely used catalysts in industry due to a unique combination of features such...
The methanol-to-hydrocarbon process is known to proceed autocatalytically in H-ZSM-5 after an induct...
The methanol-to-hydrocarbon process is known to proceed autocatalytically in H-ZSM-5 after an induct...
The rapidly increasing demand of oil-based chemicals calls for the development of new technologies b...
Zeolites are the workhorses of today's chemical industry. For decades they have been successfully ap...
Neutron scattering methods observed complete room temperature conversion of methanol to framework me...
The methanol-to-olefin process is a showcase example of complex zeolite-catalyzed chemistry. At real...
A systematic molecular level and spectroscopic investigation is presented to show the cooperative ro...
Catalytic conversion of methanol to light olefins (MTO) over acidic zeolites is currently one of the...
Zeolites have a broad spectrum of applications as robust microporous catalysts for various chemical ...
The methanol-to-olefin process is a showcase example of complex zeolite-catalyzed chemistry. At real...
We discuss the role of QM/MM (embedded cluster) computational techniques in catalytic science, in pa...
The transformation of methanol-to-hydrocarbons (MTH) has significant potential as a route to synthes...
Zeolites are amongst the most widely investigated and topical of inorganic materials. They are wide...
The conversion of methanol-to-hydrocarbons (MTH) is known to occur via an autocatalytic process in z...
Zeolites are the most widely used catalysts in industry due to a unique combination of features such...
The methanol-to-hydrocarbon process is known to proceed autocatalytically in H-ZSM-5 after an induct...
The methanol-to-hydrocarbon process is known to proceed autocatalytically in H-ZSM-5 after an induct...
The rapidly increasing demand of oil-based chemicals calls for the development of new technologies b...
Zeolites are the workhorses of today's chemical industry. For decades they have been successfully ap...
Neutron scattering methods observed complete room temperature conversion of methanol to framework me...
The methanol-to-olefin process is a showcase example of complex zeolite-catalyzed chemistry. At real...
A systematic molecular level and spectroscopic investigation is presented to show the cooperative ro...
Catalytic conversion of methanol to light olefins (MTO) over acidic zeolites is currently one of the...
Zeolites have a broad spectrum of applications as robust microporous catalysts for various chemical ...
The methanol-to-olefin process is a showcase example of complex zeolite-catalyzed chemistry. At real...