Understanding the molecular-level mechanisms of phase transformation in solids is of fundamental interest for functional materials such as zeolites. Two-dimensional (2D) zeolites, when used as shape-selective catalysts, can offer improved access to the catalytically active sites and a shortened diffusion length in comparison with their 3D analogues. However, few materials are known to maintain both their intralayer microporosity and structure during calcination for organic structure-directing agent (SDA) removal. Herein we report that PST-9, a new 2D zeolite which has been synthesized via the multiple inorganic cation approach and fulfills the requirements for true layered zeolites, can be transformed into the small-pore zeolite EU-12 under...
The synthesis of PST-2, an aluminosilicate zeolite intergrowth of cage-based, large-pore SBS and SBT...
Zeolites have been widely used in many different fields including catalysis, adsorption and separati...
Controlling polymorphism is critical in areas such as pharmaceuticals, biomineralization, and cataly...
DoctorZeolites and related crystalline materials have a wide variety of commercial applications in c...
© 2014 American Chemical Society. The layered zeolite precursor RUB-36, consisting of ferrierite-ty...
Since the early reports by Barrer in the 1940s on converting natural minerals into synthetic zeolite...
As one of the most important crystalline materials of industrial relevance, zeolites are utilized in...
Zeolites are an essential class of crystalline porous materials with a wide range of applications. A...
The presented PhD thesis is focused on the synthesis, characterization, and modifications of zeolite...
Zeolites are generally defined as three-dimensional (3D) crystalline microporous aluminosilicates in...
The properties of zeolites, and thus their suitability for different applications, are intimately co...
The layered zeolite precursor RUB-36, consisting of ferrierite-type layers, can be transformed into ...
The crystallization of zeolite TUN with 1,4-bis(N-methylpyrrolidinium)butane as template proceeds th...
The topotactic transformation of layered zeolite precursors to threedimensional zeolite frameworks i...
Two-dimensional (2D) zeolites, originating from lamellar precursors, are a special kind of porous ma...
The synthesis of PST-2, an aluminosilicate zeolite intergrowth of cage-based, large-pore SBS and SBT...
Zeolites have been widely used in many different fields including catalysis, adsorption and separati...
Controlling polymorphism is critical in areas such as pharmaceuticals, biomineralization, and cataly...
DoctorZeolites and related crystalline materials have a wide variety of commercial applications in c...
© 2014 American Chemical Society. The layered zeolite precursor RUB-36, consisting of ferrierite-ty...
Since the early reports by Barrer in the 1940s on converting natural minerals into synthetic zeolite...
As one of the most important crystalline materials of industrial relevance, zeolites are utilized in...
Zeolites are an essential class of crystalline porous materials with a wide range of applications. A...
The presented PhD thesis is focused on the synthesis, characterization, and modifications of zeolite...
Zeolites are generally defined as three-dimensional (3D) crystalline microporous aluminosilicates in...
The properties of zeolites, and thus their suitability for different applications, are intimately co...
The layered zeolite precursor RUB-36, consisting of ferrierite-type layers, can be transformed into ...
The crystallization of zeolite TUN with 1,4-bis(N-methylpyrrolidinium)butane as template proceeds th...
The topotactic transformation of layered zeolite precursors to threedimensional zeolite frameworks i...
Two-dimensional (2D) zeolites, originating from lamellar precursors, are a special kind of porous ma...
The synthesis of PST-2, an aluminosilicate zeolite intergrowth of cage-based, large-pore SBS and SBT...
Zeolites have been widely used in many different fields including catalysis, adsorption and separati...
Controlling polymorphism is critical in areas such as pharmaceuticals, biomineralization, and cataly...