Visualizing proton-transfer processes at the nanoscale is essential for understanding the reactivity of zeolite-based catalyst materials. In this work, the Brønsted-acid-catalyzed oligomerization of styrene derivatives was used for the first time as a single molecule probe reaction to study the reactivity of individual zeolite H-ZSM-5 crystals in different zeolite framework, reactant and solvent environments. This was accomplished via the formation of distinct dimeric and trimeric fluorescent carbocations, characterized by their different photostability, as detected by single molecule fluorescence microscopy. The oligomerization kinetics turned out to be very sensitive to the reaction conditions and the presence of the local structural defe...
A combination of in-situ optical and fluorescence microspectroscopy has been employed to investigate...
Large zeolite crystals have been used as model systems for the investigation of diffusion and cataly...
Large zeolite crystals have been used as model systems for the investigation of diffusion and cataly...
Visualizing proton-transfer processes at the nanoscale is essential for understanding the reactivity...
Visualizing proton-transfer processes at the nanoscale is essential for understanding the reactivity...
Zeolite activity and selectivity is often determined by the underlying proton and hydrogen-transfer ...
The Brønsted acid-catalyzed oligomerization of 4-fluorostyrene has been studied on a series ofH-ZSM-...
Optimizing the number, distribution, and accessibility of Brønsted acid sites in zeolite-based catal...
Optimizing the number, distribution, and accessibility of Bronsted acid sites in zeolite-based catal...
*S Supporting Information ABSTRACT: Optimizing the number, distribution, and accessibility of Brønst...
Zeolite activity and selectivity is often determined by the underlying proton and hydrogen-transfer ...
A series of H-ZSM-5 crystallites with different framework Si/Al ratios was studied by analyzing the ...
A combination of optical and fluorescence microscopy was used to study the morphology of micro- and ...
Optimizing the number, distribution, and accessibility of Brønsted acid sites in zeolite-based catal...
A combination of in-situ optical and fluorescence microspectroscopy has been employed to investigate...
Large zeolite crystals have been used as model systems for the investigation of diffusion and cataly...
Large zeolite crystals have been used as model systems for the investigation of diffusion and cataly...
Visualizing proton-transfer processes at the nanoscale is essential for understanding the reactivity...
Visualizing proton-transfer processes at the nanoscale is essential for understanding the reactivity...
Zeolite activity and selectivity is often determined by the underlying proton and hydrogen-transfer ...
The Brønsted acid-catalyzed oligomerization of 4-fluorostyrene has been studied on a series ofH-ZSM-...
Optimizing the number, distribution, and accessibility of Brønsted acid sites in zeolite-based catal...
Optimizing the number, distribution, and accessibility of Bronsted acid sites in zeolite-based catal...
*S Supporting Information ABSTRACT: Optimizing the number, distribution, and accessibility of Brønst...
Zeolite activity and selectivity is often determined by the underlying proton and hydrogen-transfer ...
A series of H-ZSM-5 crystallites with different framework Si/Al ratios was studied by analyzing the ...
A combination of optical and fluorescence microscopy was used to study the morphology of micro- and ...
Optimizing the number, distribution, and accessibility of Brønsted acid sites in zeolite-based catal...
A combination of in-situ optical and fluorescence microspectroscopy has been employed to investigate...
Large zeolite crystals have been used as model systems for the investigation of diffusion and cataly...
Large zeolite crystals have been used as model systems for the investigation of diffusion and cataly...