Visualizing and measuring the gas distribution in close proximity to a working catalyst is crucial for understanding how the catalytic activity depends on the structure of the catalyst. However, existing methods are not able to fully determine the gas distribution during a catalytic process. Here we report on how the distribution of a gas during a catalytic reaction can be imaged in situ with high spatial (400 μm) and temporal (15 μs) resolution using infrared planar laser-induced fluorescence. The technique is demonstrated by monitoring, in real-time, the distribution of carbon dioxide during catalytic oxidation of carbon monoxide above powder catalysts. Furthermore, we demonstrate the versatility and potential of the technique in catalysi...
A direct correlation between the reaction activity and the surface structure of a catalyst is genera...
A stagnation flow reactor has been designed and characterized for both experimental and modeling stu...
A direct correlation between the reaction activity and the surface structure of a catalyst is genera...
Visualizing and measuring the gas distribution in close proximity to a working catalyst is crucial f...
Visualizing and measuring the gas distribution in close proximity to a working catalyst is crucial f...
In this chapter we describe Planar Laser Induced Fluorescence (PLIF) to investigate the reactants or...
This thesis deals with the development and application of laser-based techniques, for gas phasechara...
We report the first experiment carried out on an in situ setup, which allows for detection of CO(2) ...
In recent years, efforts have been made in catalysis related surface science studies to explore the ...
An increasing number of catalysis experiments are conducted at higher pressures to bridge the pressu...
A stagnation flow reactor has been designed and characterized for both experimental and modeling stu...
In-situ knowledge of the gas composition close to a catalyst is essential for a better understanding...
We use multiscale modeling to analyze laser-induced fluorescence (LIF) measurements of the CO oxidat...
*S Supporting Information ABSTRACT: The gas composition surrounding a catalytic sample has direct im...
Near-infrared imaging of 2D and 3D spatial resolutions allowed access to behavior of flowing gases a...
A direct correlation between the reaction activity and the surface structure of a catalyst is genera...
A stagnation flow reactor has been designed and characterized for both experimental and modeling stu...
A direct correlation between the reaction activity and the surface structure of a catalyst is genera...
Visualizing and measuring the gas distribution in close proximity to a working catalyst is crucial f...
Visualizing and measuring the gas distribution in close proximity to a working catalyst is crucial f...
In this chapter we describe Planar Laser Induced Fluorescence (PLIF) to investigate the reactants or...
This thesis deals with the development and application of laser-based techniques, for gas phasechara...
We report the first experiment carried out on an in situ setup, which allows for detection of CO(2) ...
In recent years, efforts have been made in catalysis related surface science studies to explore the ...
An increasing number of catalysis experiments are conducted at higher pressures to bridge the pressu...
A stagnation flow reactor has been designed and characterized for both experimental and modeling stu...
In-situ knowledge of the gas composition close to a catalyst is essential for a better understanding...
We use multiscale modeling to analyze laser-induced fluorescence (LIF) measurements of the CO oxidat...
*S Supporting Information ABSTRACT: The gas composition surrounding a catalytic sample has direct im...
Near-infrared imaging of 2D and 3D spatial resolutions allowed access to behavior of flowing gases a...
A direct correlation between the reaction activity and the surface structure of a catalyst is genera...
A stagnation flow reactor has been designed and characterized for both experimental and modeling stu...
A direct correlation between the reaction activity and the surface structure of a catalyst is genera...