A detailed and systematic polarized confocal fluorescence microscopy investigation is presented on three batches of large coffin-shaped ZSM-5 crystals (i.e., parent, steamed at 500 degrees C, and steamed at 700 degrees C). In total, six laser lines of different wavelength in the visible region are employed on two crystal positions and three orientations with respect to the polarization plane of the excitation laser light. A fluorescent probe molecule is generated inside the zeolite pores, originating from the acid-catalyzed oligomerization of 4-fluorostyrene. A thorough analysis of the polarization plane of emitting fluorescent light reveals insight into the orientation of the fluorescent probe molecule restricted by the highly ordered zeol...
This perspective article highlights recent methodical approaches for probing acid sites in zeolites ...
The catalytic performance of microporous materials such as zeolites is determined not only by the ac...
Visualizing proton-transfer processes at the nanoscale is essential for understanding the reactivity...
A detailed and systematic polarized confocal fluorescence microscopy investigation is presented on t...
A detailed and systematic polarized confocal fluorescence microscopy investigation is presented on t...
A micro-spectroscopic method has been developed to probe the accessibility of zeolite crystals using...
Template decomposition followed by confocal fluorescence microscopy reveals a tetragonal-pyramidal i...
Confocal fluorescence microscopy was employed to selectively visualize the dispersion and orientatio...
Confocal fluorescence microscopy has been used in combination with bulky non-reactive dyes (i.e. pro...
Template decomposition followed by confocal fluorescence microscopy reveals a tetragonal-pyramidal i...
This PhD thesis is aimed at using fluorescence microscopy to study accessibility, structure and reac...
Confocal fluorescence microscopy has been used in combination with bulky non-reactive dyes (i.e. pro...
A combination of in situ UV-Vis and confocal fluorescence micro-spectroscopy was used to study the t...
A combination of optical and fluorescence microscopy was used to study the morphology of micro- and ...
We investigate the local static molecular orientational behavior in zeolite L inclusion compounds by...
This perspective article highlights recent methodical approaches for probing acid sites in zeolites ...
The catalytic performance of microporous materials such as zeolites is determined not only by the ac...
Visualizing proton-transfer processes at the nanoscale is essential for understanding the reactivity...
A detailed and systematic polarized confocal fluorescence microscopy investigation is presented on t...
A detailed and systematic polarized confocal fluorescence microscopy investigation is presented on t...
A micro-spectroscopic method has been developed to probe the accessibility of zeolite crystals using...
Template decomposition followed by confocal fluorescence microscopy reveals a tetragonal-pyramidal i...
Confocal fluorescence microscopy was employed to selectively visualize the dispersion and orientatio...
Confocal fluorescence microscopy has been used in combination with bulky non-reactive dyes (i.e. pro...
Template decomposition followed by confocal fluorescence microscopy reveals a tetragonal-pyramidal i...
This PhD thesis is aimed at using fluorescence microscopy to study accessibility, structure and reac...
Confocal fluorescence microscopy has been used in combination with bulky non-reactive dyes (i.e. pro...
A combination of in situ UV-Vis and confocal fluorescence micro-spectroscopy was used to study the t...
A combination of optical and fluorescence microscopy was used to study the morphology of micro- and ...
We investigate the local static molecular orientational behavior in zeolite L inclusion compounds by...
This perspective article highlights recent methodical approaches for probing acid sites in zeolites ...
The catalytic performance of microporous materials such as zeolites is determined not only by the ac...
Visualizing proton-transfer processes at the nanoscale is essential for understanding the reactivity...