We have investigated zeolite-adsorbate interactions with time- resolved (picosecond) non-linear infrared spectroscopy, In these experiments, the zeolite hydroxyl (the catalytically active, acid site) is vibrationally excited after which the energy relaxation can be monitored real-time. The effect of the presence of adsorbates on energy relaxation rates and pathways provides information on catalyst-adsorbate interaction dynamics. Furthermore, the effect of the presence of adsorbates on the homogeneous linewidth, investigated with infrared hole- burning spectroscopy, provides information on the nature of the interaction potential. (C) 1997 Elsevier Science B.
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...
We have investigated zeolite-adsorbate interactions with time- resolved (picosecond) non-linear infr...
We have investigated zeolite-adsorbate interactions with time- resolved (picosecond) non-linear infr...
We have investigated zeolite-adsorbate interactions with time- resolved (picosecond) non-linear infr...
The application of (picosecond) nonlinear infrared spectroscopy to investigate zeolite catalysts and...
With time-resolved (picosecond) infrared saturation spectroscopy new information is obtained about t...
With time-resolved (picosecond) infrared saturation spectroscopy new information is obtained about t...
The application of (picosecond) nonlinear infrared spectroscopy to investigate zeolite catalysts and...
The application of (picosecond) nonlinear infrared spectroscopy to investigate zeolite catalysts and...
With time-resolved (picosecond) infrared saturation spectroscopy new information is obtained about t...
The application of (picosecond) nonlinear infrared spectroscopy to investigate zeolite catalysts and...
With time-resolved (picosecond) infrared saturation spectroscopy new information is obtained about t...
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...
We have investigated zeolite-adsorbate interactions with time- resolved (picosecond) non-linear infr...
We have investigated zeolite-adsorbate interactions with time- resolved (picosecond) non-linear infr...
We have investigated zeolite-adsorbate interactions with time- resolved (picosecond) non-linear infr...
The application of (picosecond) nonlinear infrared spectroscopy to investigate zeolite catalysts and...
With time-resolved (picosecond) infrared saturation spectroscopy new information is obtained about t...
With time-resolved (picosecond) infrared saturation spectroscopy new information is obtained about t...
The application of (picosecond) nonlinear infrared spectroscopy to investigate zeolite catalysts and...
The application of (picosecond) nonlinear infrared spectroscopy to investigate zeolite catalysts and...
With time-resolved (picosecond) infrared saturation spectroscopy new information is obtained about t...
The application of (picosecond) nonlinear infrared spectroscopy to investigate zeolite catalysts and...
With time-resolved (picosecond) infrared saturation spectroscopy new information is obtained about t...
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...