The development of intracrystalline mesoporosity within zeolites has been a long-standing goal in catalysis as it greatly contributes to alleviating the diffusion limitations of these widely used microporous materials. The combination of in situ synchrotron X-ray diffraction and liquid-cell transmission electron microscopy enabled the first in situ observation of the development of intracrystalline mesoporosity in zeolites and provided structural and kinetic information on the changes produced in zeolites to accommodate the mesoporosity. The interpretation of the time-resolved diffractograms together with computational simulations evidenced the formation of short-range hexagonally ordered mesoporosity within the zeolite framework, and the i...
International audienceA full understanding of zeolite mesoporosity is not trivial and yet is necessa...
Zeolites are the catalytic workhorses of the refinery and chemicals production industry. Their inher...
A combination of optical and fluorescence microscopy was used to study the morphology of micro- and ...
The development of intracrystalline mesoporosity within zeolites has been a long-standing goal in ca...
The development of intracrystalline mesoporosity within zeolites has been a long-standing goal in ca...
The treatment of zeolites with surfactants in alkaline media is an effective and versatile technique...
The treatment of zeolites with surfactants in alkaline media is an effective and versatile technique...
Novel insights into the surfactant-templating process leading to the formation of tailored intracrys...
The small size of micropores (typically <1 nm) in zeolites causes slow diffusion of reactant and pro...
Introducing hierarchical porosity to zeolites is vital for providing molecular access to microporous...
FAU-type zeolite was synthesized at room temperature to study the mechanism of its formation. The sl...
Mass transfer can be enhanced by introducing mesopores (2–50 nm) or macropores (>50 nm) to zeolites ...
Twenty years ago, one of us embarked (Bursill, L. A.; Lodge, E. A.; Thomas, J. M. Zeolitic structure...
Introducing hierarchical porosity to zeolites is vital for providing molecular access to microporous...
International audienceA full understanding of zeolite mesoporosity is not trivial and yet is necessa...
Zeolites are the catalytic workhorses of the refinery and chemicals production industry. Their inher...
A combination of optical and fluorescence microscopy was used to study the morphology of micro- and ...
The development of intracrystalline mesoporosity within zeolites has been a long-standing goal in ca...
The development of intracrystalline mesoporosity within zeolites has been a long-standing goal in ca...
The treatment of zeolites with surfactants in alkaline media is an effective and versatile technique...
The treatment of zeolites with surfactants in alkaline media is an effective and versatile technique...
Novel insights into the surfactant-templating process leading to the formation of tailored intracrys...
The small size of micropores (typically <1 nm) in zeolites causes slow diffusion of reactant and pro...
Introducing hierarchical porosity to zeolites is vital for providing molecular access to microporous...
FAU-type zeolite was synthesized at room temperature to study the mechanism of its formation. The sl...
Mass transfer can be enhanced by introducing mesopores (2–50 nm) or macropores (>50 nm) to zeolites ...
Twenty years ago, one of us embarked (Bursill, L. A.; Lodge, E. A.; Thomas, J. M. Zeolitic structure...
Introducing hierarchical porosity to zeolites is vital for providing molecular access to microporous...
International audienceA full understanding of zeolite mesoporosity is not trivial and yet is necessa...
Zeolites are the catalytic workhorses of the refinery and chemicals production industry. Their inher...
A combination of optical and fluorescence microscopy was used to study the morphology of micro- and ...