The growth of hydrothermally stable ordered meso-porous silica with M41S type structure interconnected around zeolite crystals was achieved from seeds normally nucleating the crystallization of micro-porous zeolite. The solid state NMR and FT-IR showed species like Si(OSi)3OH and Si(OSi)2(OH)2 (or Q3 and Q2 sites, respectively) are formed during first hydrothermal treatment with surfactant and NaOH. These species and surface silanol group of zeolite crystal condense to give meso-porous silica structure interconnected around zeolite crystal during re-crystallization at lower pH. Resulting mesomicroporous hybrid material is found to be highly active, selective and stable in the synthesis of 2-(phenylamino) ethanol from aniline and ethylene carbonate compare to parent ZSM-5 and pure MCM-41.

Growth of hydrothermally stable meso-porous silica structure interconnected around micro-porous zeolite crystals

BERLIER, Gloria;
2011-01-01

Abstract

The growth of hydrothermally stable ordered meso-porous silica with M41S type structure interconnected around zeolite crystals was achieved from seeds normally nucleating the crystallization of micro-porous zeolite. The solid state NMR and FT-IR showed species like Si(OSi)3OH and Si(OSi)2(OH)2 (or Q3 and Q2 sites, respectively) are formed during first hydrothermal treatment with surfactant and NaOH. These species and surface silanol group of zeolite crystal condense to give meso-porous silica structure interconnected around zeolite crystal during re-crystallization at lower pH. Resulting mesomicroporous hybrid material is found to be highly active, selective and stable in the synthesis of 2-(phenylamino) ethanol from aniline and ethylene carbonate compare to parent ZSM-5 and pure MCM-41.
2011
62
12
1166
1172
Interconnected meso-porous silica; Hydrothermal stability; Meso-micro hybrid material; Synthesis of amino alcohol
Anil K. Kinage; Atul K. Prashar; Gloria Berlier; Rajiv K. Chaturvedi
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/2318/96693
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