Mononuclear Cr(III)-silica models have been studied by quantum chemical methods with respect to catalytic activity toward dehydrogenation of ethane. Both cluster and slab models have been developed and used to explore the conceptual model of mononuclear Cr(III) with three covalent ligands that coordinate through oxygen. The study focuses on a reaction mechanism consisting of three main reaction steps: (1) C - H activation of ethane according to -bond metathesis and accompanied by the formation of O - H and Cr - C bonds, (2) -H transfer to chromium with subsequent loss of ethene and (3) regeneration of the chromium site under evolution of H2. An alternative mechanism is also explored, in which C - H activation takes place at a reactive hydri...
Cr-catalyzed ethene trimerization is an industrially important process to produce 1-hexene. Despite ...
Light alkenes, such as propene and butenes, are important intermediates in the manufacture of fuel c...
This research focuses on optimizing transition metal nanocatalyst immobilization and activity to enh...
Mononuclear Cr(III)-silica models have been studied by quantum chemical methods with respect to cata...
Typescript (photocopy).The nature of the active sites for ethane dehydrogenation over chromium suppo...
Catalytic dehydrogenation of ethane over mononuclear Cr(III) surface sites on silica. Part I. C---H ...
Natural gas reserves are being produced at increasing rates world wide, thus providing an abundance ...
This thesis has been divided into four major sections. The first section deals with the reactions of...
The Phillips catalyst, chromium oxides supported on silica, is one of the most widely used catalysts...
The oxidative dehydrogenation of ethane (ODE) with CO2 to C2H4 has been studied over a series of Cr-...
Altres ajuts: Acord transformatiu CRUE-CSICOne class of particularly active catalysts for the Propan...
By converting low-value commodity fuels into high-value products, like polymer precursors, chemical ...
We describe the reactivity of well-defined chromium silicates toward ethylene and propane. The initi...
The mechanism of the C-H bond activation of hydrocarbons by a nonheme chromium(IV) oxo complex beari...
The mechanism of the C–H bond activation of hydrocarbons by a nonheme chromium(IV) oxo complex bear...
Cr-catalyzed ethene trimerization is an industrially important process to produce 1-hexene. Despite ...
Light alkenes, such as propene and butenes, are important intermediates in the manufacture of fuel c...
This research focuses on optimizing transition metal nanocatalyst immobilization and activity to enh...
Mononuclear Cr(III)-silica models have been studied by quantum chemical methods with respect to cata...
Typescript (photocopy).The nature of the active sites for ethane dehydrogenation over chromium suppo...
Catalytic dehydrogenation of ethane over mononuclear Cr(III) surface sites on silica. Part I. C---H ...
Natural gas reserves are being produced at increasing rates world wide, thus providing an abundance ...
This thesis has been divided into four major sections. The first section deals with the reactions of...
The Phillips catalyst, chromium oxides supported on silica, is one of the most widely used catalysts...
The oxidative dehydrogenation of ethane (ODE) with CO2 to C2H4 has been studied over a series of Cr-...
Altres ajuts: Acord transformatiu CRUE-CSICOne class of particularly active catalysts for the Propan...
By converting low-value commodity fuels into high-value products, like polymer precursors, chemical ...
We describe the reactivity of well-defined chromium silicates toward ethylene and propane. The initi...
The mechanism of the C-H bond activation of hydrocarbons by a nonheme chromium(IV) oxo complex beari...
The mechanism of the C–H bond activation of hydrocarbons by a nonheme chromium(IV) oxo complex bear...
Cr-catalyzed ethene trimerization is an industrially important process to produce 1-hexene. Despite ...
Light alkenes, such as propene and butenes, are important intermediates in the manufacture of fuel c...
This research focuses on optimizing transition metal nanocatalyst immobilization and activity to enh...