Zeolite-supported metal nanocluster catalysts have attracted significant attention due to their broad application in heterogeneously catalyzed reactions. The preparation of highly dispersed metal catalysts commonly involves the use of organic compounds and requires the implementation of complicated procedures, which are neither green nor deployable at the large scale. Herein, we present a novel facile method (vacuum-heating) which employs a specific thermal vacuum processing protocol of catalysts to promote the decomposition of metal precursors. The removal of coordinated H2O via vacuum-heating restricts the formation of intermediates (metal-bound OH species), resulting in catalysts with a uniform, metal nanocluster distribution. The struct...
International audienceThe development of catalysts that can operate under exceptionally harsh and un...
International audienceThe development of catalysts that can operate under exceptionally harsh and un...
Transition metal nanoclusters are more active and selective catalysts than their bulk counterparts a...
The use of nanoclusters in systems with confined void spaces such as inside mesoporous or microporou...
Multimetallic molecular cluster compounds have been synthesised and characterised. They have been us...
The molecular-sized void space of the zeolitic micropores is perfect matrices to encapsulate and sta...
ABSTRACT: The synthesis protocols for encapsulation of metal clusters reported here expand the diver...
The selective encapsulation of metal clusters within zeolites can be used to prepare clusters that a...
Metal clusters and nanoparticles, which have been used to tune the acidity of zeolite support, are b...
The synthesis protocols for encapsulation of metal clusters reported here expand the diversity in ca...
Application of low-temperature plasma for metal-containing catalyst synthesis leads to several adva...
Zeolite-encapsulated metal clusters have been shown to be an effective bifunctional catalyst for tan...
Zeolite-encapsulated metal clusters have been shown to be an effective bifunctional catalyst for tan...
Zeolite-encapsulated metal clusters have been shown to be an effective bifunctional catalyst for tan...
In order to design an ideal catalyst, the catalytic properties should be fully understood at atomic ...
International audienceThe development of catalysts that can operate under exceptionally harsh and un...
International audienceThe development of catalysts that can operate under exceptionally harsh and un...
Transition metal nanoclusters are more active and selective catalysts than their bulk counterparts a...
The use of nanoclusters in systems with confined void spaces such as inside mesoporous or microporou...
Multimetallic molecular cluster compounds have been synthesised and characterised. They have been us...
The molecular-sized void space of the zeolitic micropores is perfect matrices to encapsulate and sta...
ABSTRACT: The synthesis protocols for encapsulation of metal clusters reported here expand the diver...
The selective encapsulation of metal clusters within zeolites can be used to prepare clusters that a...
Metal clusters and nanoparticles, which have been used to tune the acidity of zeolite support, are b...
The synthesis protocols for encapsulation of metal clusters reported here expand the diversity in ca...
Application of low-temperature plasma for metal-containing catalyst synthesis leads to several adva...
Zeolite-encapsulated metal clusters have been shown to be an effective bifunctional catalyst for tan...
Zeolite-encapsulated metal clusters have been shown to be an effective bifunctional catalyst for tan...
Zeolite-encapsulated metal clusters have been shown to be an effective bifunctional catalyst for tan...
In order to design an ideal catalyst, the catalytic properties should be fully understood at atomic ...
International audienceThe development of catalysts that can operate under exceptionally harsh and un...
International audienceThe development of catalysts that can operate under exceptionally harsh and un...
Transition metal nanoclusters are more active and selective catalysts than their bulk counterparts a...