The encapsulation of metal clusters (Pt, Ru, Rh) within MFI was achieved by exchanging cationic metal precursors into a parent zeolite (BEA, FAU), reducing them with H<sub>2</sub> to form metal clusters, and transforming these zeolites into daughter structures of higher framework density (MFI) under hydrothermal conditions. These transformations required MFI seeds or organic templates for FAU parent zeolites, but not for BEA, and occurred with the retention of encapsulated clusters. Clusters uniform in size (1.3–1.7 nm) and exposing clean and accessible surfaces formed in BEA and FAU zeolites; their size remained essentially unchanged upon transformation into MFI. Encapsulation selectivities, determined from the relative hydrogenation rates...
A unique and well-controllable synthesis route to encapsulate metallic nanoparticles in the interior...
Herein, we report a seeded growth methodology using zeolite crystal seeds for the rapid hydrothermal...
Synthesis o f clusters o f acicular MFI zeolites from porous silica layers strongly attached to stai...
ABSTRACT: The encapsulation of metal clusters (Pt, Ru, Rh) within MFI was achieved by exchanging cat...
The selective encapsulation of metal clusters within zeolites can be used to prepare clusters that a...
ABSTRACT: The synthesis protocols for encapsulation of metal clusters reported here expand the diver...
The encapsulation of metal nanoparticles within zeolitic voids of molecular dimensions protects meta...
The encapsulation of metal nanoparticles within zeolitic voids of molecular dimensions protects meta...
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...
The synthesis protocols for encapsulation of metal clusters reported here expand the diversity in ca...
Zeolite-encapsulated metal clusters have been shown to be an effective bifunctional catalyst for tan...
Encapsulating catalytically active components into zeolites is a way to prepare multifunctional cata...
AuPd, AuPt, and PdPt bimetallic clusters uniform in size and composition were prepared using hydroth...
A unique and well-controllable synthesis route to encapsulate metallic nanoparticles in the interior...
A unique and well-controllable synthesis route to encapsulate metallic nanoparticles in the interior...
Herein, we report a seeded growth methodology using zeolite crystal seeds for the rapid hydrothermal...
Synthesis o f clusters o f acicular MFI zeolites from porous silica layers strongly attached to stai...
ABSTRACT: The encapsulation of metal clusters (Pt, Ru, Rh) within MFI was achieved by exchanging cat...
The selective encapsulation of metal clusters within zeolites can be used to prepare clusters that a...
ABSTRACT: The synthesis protocols for encapsulation of metal clusters reported here expand the diver...
The encapsulation of metal nanoparticles within zeolitic voids of molecular dimensions protects meta...
The encapsulation of metal nanoparticles within zeolitic voids of molecular dimensions protects meta...
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...
The synthesis protocols for encapsulation of metal clusters reported here expand the diversity in ca...
Zeolite-encapsulated metal clusters have been shown to be an effective bifunctional catalyst for tan...
Encapsulating catalytically active components into zeolites is a way to prepare multifunctional cata...
AuPd, AuPt, and PdPt bimetallic clusters uniform in size and composition were prepared using hydroth...
A unique and well-controllable synthesis route to encapsulate metallic nanoparticles in the interior...
A unique and well-controllable synthesis route to encapsulate metallic nanoparticles in the interior...
Herein, we report a seeded growth methodology using zeolite crystal seeds for the rapid hydrothermal...
Synthesis o f clusters o f acicular MFI zeolites from porous silica layers strongly attached to stai...