The performance of zeolites as solid acid catalysts is strongly influenced by the accessibility of active sites. However, synthetic zeolites typically grow as complex aggregates of small nanocrystallites rather than perfect single crystals. The structural complexity must therefore play a decisive role in zeolite catalyst applicability. Traditional tools for the characterization of heterogeneous catalysts are unable to directly relate nanometer scale structural properties to the corresponding catalytic performance. In this work, an innovative correlative super-resolution fluorescence and scanning electron microscope is applied and the appropriate analysis procedures are developed to investigate the effect of small-port H-mordenite (H-MOR) mo...
Optimizing the number, distribution, and accessibility of Brønsted acid sites in zeolite-based catal...
eolites are porous crystalline solids with pores of molecular dimensions, providing size and shape s...
Zeolites are the most widely used catalysts in industry due to a unique combination of features such...
The performance of zeolites as solid acid catalysts is strongly influenced by the accessibility of a...
Nanocrystalline zeolite particles are applied in a wide range of catalytic reactions. Their size, sh...
Spatial restrictions around catalytic sites, provided by molecular-sized micropores, are beneficial ...
Zeolites are microporous aluminosilicates that find a wide-spread application as catalysts in the oi...
Optimizing the number, distribution, and accessibility of Bronsted acid sites in zeolite-based catal...
Dealuminated zeolites are widely used acid catalysts in research and the chemical industry. Bulk-lev...
Zeolites are crystalline microporous aluminosilicates, one of the most versatile and widely used cla...
The rational improvement of solid catalysts requires a thorough understanding of the structure-activ...
The complexity of catalysts that the surface science community has been able to address has increase...
This perspective article highlights recent methodical approaches for probing acid sites in zeolites ...
The goal of this PhD thesis is to apply fluorescence microscopy to investigate the interplay between...
This PhD thesis is aimed at using fluorescence microscopy to study accessibility, structure and reac...
Optimizing the number, distribution, and accessibility of Brønsted acid sites in zeolite-based catal...
eolites are porous crystalline solids with pores of molecular dimensions, providing size and shape s...
Zeolites are the most widely used catalysts in industry due to a unique combination of features such...
The performance of zeolites as solid acid catalysts is strongly influenced by the accessibility of a...
Nanocrystalline zeolite particles are applied in a wide range of catalytic reactions. Their size, sh...
Spatial restrictions around catalytic sites, provided by molecular-sized micropores, are beneficial ...
Zeolites are microporous aluminosilicates that find a wide-spread application as catalysts in the oi...
Optimizing the number, distribution, and accessibility of Bronsted acid sites in zeolite-based catal...
Dealuminated zeolites are widely used acid catalysts in research and the chemical industry. Bulk-lev...
Zeolites are crystalline microporous aluminosilicates, one of the most versatile and widely used cla...
The rational improvement of solid catalysts requires a thorough understanding of the structure-activ...
The complexity of catalysts that the surface science community has been able to address has increase...
This perspective article highlights recent methodical approaches for probing acid sites in zeolites ...
The goal of this PhD thesis is to apply fluorescence microscopy to investigate the interplay between...
This PhD thesis is aimed at using fluorescence microscopy to study accessibility, structure and reac...
Optimizing the number, distribution, and accessibility of Brønsted acid sites in zeolite-based catal...
eolites are porous crystalline solids with pores of molecular dimensions, providing size and shape s...
Zeolites are the most widely used catalysts in industry due to a unique combination of features such...