Structure–activity relationships in heterogeneous catalysis are challenging to be measured on a single-particle level. For the first time, one X-ray beam is used to determine the crystallographic structure and reactivity of a single zeolite crystal. The method generates μm-resolved X-ray diffraction (μ-XRD) and X-ray excited optical fluorescence (μ-XEOF) maps of the crystallinity and Brønsted reactivity of a zeolite crystal previously reacted with a styrene probe molecule. The local gradients in chemical reactivity (derived from μ-XEOF) were correlated with local crystallinity and framework Al content, determined by μ-XRD. Two distinctly different types of fluorescent species formed selectively, depending on the local zeolite crystallinity....
Visualizing proton-transfer processes at the nanoscale is essential for understanding the reactivity...
Large advances in the development of catalytic materials were made with the synthesis of zeolites, w...
In the last few years considerable effort has been directed at the targeted synthesis of zeolites an...
Structure–activity relationships in heterogeneous catalysis are challenging to be measured on a sing...
Structure-activity relationships in heterogeneous catalysis are challenging to be measured on a sing...
International audienceStructure-activity relationships in heterogeneous catalysis are challenging to...
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...
Optimizing the number, distribution, and accessibility of Brønsted acid sites in zeolite-based catal...
Optimizing the number, distribution, and accessibility of Brønsted acid sites in zeolite-based catal...
This PhD thesis is aimed at using fluorescence microscopy to study accessibility, structure and reac...
*S Supporting Information ABSTRACT: Optimizing the number, distribution, and accessibility of Brønst...
Visualizing proton-transfer processes at the nanoscale is essential for understanding the reactivity...
This perspective article highlights recent methodical approaches for probing acid sites in zeolites ...
Visualizing proton-transfer processes at the nanoscale is essential for understanding the reactivity...
Large advances in the development of catalytic materials were made with the synthesis of zeolites, w...
In the last few years considerable effort has been directed at the targeted synthesis of zeolites an...
Structure–activity relationships in heterogeneous catalysis are challenging to be measured on a sing...
Structure-activity relationships in heterogeneous catalysis are challenging to be measured on a sing...
International audienceStructure-activity relationships in heterogeneous catalysis are challenging to...
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...
Optimizing the number, distribution, and accessibility of Brønsted acid sites in zeolite-based catal...
Optimizing the number, distribution, and accessibility of Brønsted acid sites in zeolite-based catal...
This PhD thesis is aimed at using fluorescence microscopy to study accessibility, structure and reac...
*S Supporting Information ABSTRACT: Optimizing the number, distribution, and accessibility of Brønst...
Visualizing proton-transfer processes at the nanoscale is essential for understanding the reactivity...
This perspective article highlights recent methodical approaches for probing acid sites in zeolites ...
Visualizing proton-transfer processes at the nanoscale is essential for understanding the reactivity...
Large advances in the development of catalytic materials were made with the synthesis of zeolites, w...
In the last few years considerable effort has been directed at the targeted synthesis of zeolites an...