With time-resolved (picosecond) infrared saturation spectroscopy new information is obtained about the interaction of zeolite surface hydroxyls with small adsorbed molecules. It is found that the presence of the adsorbate, which is weakly hydrogen bonded to the zeolite hydroxyl, causes the vibrational lifetime of the zeolite hydroxyl to decrease. Remarkably, this enhancement of the de-excitation is neither due to energy transfer to internal degrees of freedom of the adsorbed species nor into a one-photon desorption process. Rather, it is due to an increased coupling of the hydroxyl stretching mode to its accepting mode
In this time-resolved study of vibrational dynamics of deuterated surface hydroxyls at acid sites in...
In this time-resolved study of vibrational dynamics of deuterated surface hydroxyls at acid sites in...
Excited vibrational population lifetimes of hydroxyls in zeolite Y are shown to provide insight in t...
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...
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...
With time-resolved (picosecond) infrared saturation spectroscopy new information is obtained about t...
We have investigated zeolite-adsorbate interactions with time- resolved (picosecond) non-linear infr...
In this time-resolved study of vibrational dynamics of deuterated surface hydroxyls at acid sites in...
Excited vibrational population lifetimes of hydroxyls in zeolite Y are shown to provide insight in t...
Excited vibrational population lifetimes of hydroxyls in zeolite Y are shown to provide insight in t...
In this time-resolved study of vibrational dynamics of deuterated surface hydroxyls at acid sites in...
With infrared transient hole-burning spectroscopy we have investigated the influence of OD ... X hyd...
In this time-resolved study of vibrational dynamics of deuterated surface hydroxyls at acid sites in...
In this time-resolved study of vibrational dynamics of deuterated surface hydroxyls at acid sites in...
In this time-resolved study of vibrational dynamics of deuterated surface hydroxyls at acid sites in...
Excited vibrational population lifetimes of hydroxyls in zeolite Y are shown to provide insight in t...
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...
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...
With time-resolved (picosecond) infrared saturation spectroscopy new information is obtained about t...
We have investigated zeolite-adsorbate interactions with time- resolved (picosecond) non-linear infr...
In this time-resolved study of vibrational dynamics of deuterated surface hydroxyls at acid sites in...
Excited vibrational population lifetimes of hydroxyls in zeolite Y are shown to provide insight in t...
Excited vibrational population lifetimes of hydroxyls in zeolite Y are shown to provide insight in t...
In this time-resolved study of vibrational dynamics of deuterated surface hydroxyls at acid sites in...
With infrared transient hole-burning spectroscopy we have investigated the influence of OD ... X hyd...
In this time-resolved study of vibrational dynamics of deuterated surface hydroxyls at acid sites in...
In this time-resolved study of vibrational dynamics of deuterated surface hydroxyls at acid sites in...
In this time-resolved study of vibrational dynamics of deuterated surface hydroxyls at acid sites in...
Excited vibrational population lifetimes of hydroxyls in zeolite Y are shown to provide insight in t...