Highly porous, crystalline zeolite catalysts are used industrially to catalyze the conversion of methanol to gasoline. We have performed a picosecond spectroscopic study providing insights into both the structure and the dynamics of methanol adsorbed to acid zeolites. We reveal the adsorption structure of methanol at the catalytically reactive site and show that the reaction of this complex in the zeolite to the first intermediate in the methanol-to-gasoline reaction sequence is initiated by picosecond infrared excitation. The picosecond dynamics of this activation process can be followed in real-time, and reflects the potential energy surface relevant to the reaction
We have investigated zeolite-adsorbate interactions with time- resolved (picosecond) non-linear infr...
This chapter presents infrared (IR) study on the reaction path of methanol decomposition over basic ...
We have investigated the dynamics of the O-H stretch vibration of clustered (hydrogen-bonded) methan...
Abstract Highly porous, crystalline zeolite catalysts are used industrially to catalyze the conversi...
Highly porous, crystalline zeolite catalysts are used industrially to catalyze the conversion of met...
Highly porous, crystalline zeolite catalysts are used industrially to catalyze the conversion of met...
Highly porous, crystalline zeolite catalysts are used industrially to catalyze the conversion of met...
Highly porous, crystalline zeolite catalysts are used industrially to catalyze the conversion of met...
Highly porous, crystalline zeolite catalysts are used industrially to catalyze the conversion of met...
Highly porous, crystalline zeolite catalysts are used industrially to catalyze the conversion of met...
Highly porous, crystalline zeolite catalysts are used industrially to catalyze the conversion of met...
The application of (picosecond) nonlinear infrared spectroscopy to investigate zeolite catalysts and...
The application of (picosecond) nonlinear infrared spectroscopy to investigate zeolite catalysts and...
The application of (picosecond) nonlinear infrared spectroscopy to investigate zeolite catalysts and...
The application of (picosecond) nonlinear infrared spectroscopy to investigate zeolite catalysts and...
We have investigated zeolite-adsorbate interactions with time- resolved (picosecond) non-linear infr...
This chapter presents infrared (IR) study on the reaction path of methanol decomposition over basic ...
We have investigated the dynamics of the O-H stretch vibration of clustered (hydrogen-bonded) methan...
Abstract Highly porous, crystalline zeolite catalysts are used industrially to catalyze the conversi...
Highly porous, crystalline zeolite catalysts are used industrially to catalyze the conversion of met...
Highly porous, crystalline zeolite catalysts are used industrially to catalyze the conversion of met...
Highly porous, crystalline zeolite catalysts are used industrially to catalyze the conversion of met...
Highly porous, crystalline zeolite catalysts are used industrially to catalyze the conversion of met...
Highly porous, crystalline zeolite catalysts are used industrially to catalyze the conversion of met...
Highly porous, crystalline zeolite catalysts are used industrially to catalyze the conversion of met...
Highly porous, crystalline zeolite catalysts are used industrially to catalyze the conversion of met...
The application of (picosecond) nonlinear infrared spectroscopy to investigate zeolite catalysts and...
The application of (picosecond) nonlinear infrared spectroscopy to investigate zeolite catalysts and...
The application of (picosecond) nonlinear infrared spectroscopy to investigate zeolite catalysts and...
The application of (picosecond) nonlinear infrared spectroscopy to investigate zeolite catalysts and...
We have investigated zeolite-adsorbate interactions with time- resolved (picosecond) non-linear infr...
This chapter presents infrared (IR) study on the reaction path of methanol decomposition over basic ...
We have investigated the dynamics of the O-H stretch vibration of clustered (hydrogen-bonded) methan...