JOURNAL ARTICLE

Synthesis and Characterization of the Gallosilicate Mesoporous Molecular Sieve MCM-41

Chi‐Feng ChengHeyong HeWuzong ZhouJacek KlinowskiJosé A. Sousa GonçalvesLynn F. Gladden

Year: 1996 Journal:   The Journal of Physical Chemistry Vol: 100 (1)Pages: 390-396   Publisher: American Chemical Society

Abstract

A range of mesoporous gallosilicate molecular sieves with the MCM-41 structure have been synthesized using gallium nitrate as the source of gallium and characterized in detail by elemental analysis, XRD, 71Ga and 29Si MAS NMR, N2 adsorption measurements, and TEM. The quality of the products is very sensitive to the pH of the gel mixture. Atomic absorption and XRD show that Ga and Si in the gel are incorporated into the MCM-41 structure in nearly equal proportions. 71Ga and 29Si NMR demonstrate that in all as-made samples gallium is 4-coordinate and forms a part of the MCM-41 structure. Although upon calcination gallium is partially expelled from the structure of samples with Si/Ga ≤ 20, Ga in samples with Si/Ga ≥ 30 is unaffected. N2 adsorption measurements and TEM demonstrate the high mesoporosity of gallosilicate MCM-41-30. The pore size distribution indicates that the structure of sample MCM-41-20 partially collapses upon calcination and macropores are formed.

Keywords:
Molecular sieve Calcination Gallium Mesoporous material Chemistry MCM-41 Elemental analysis Adsorption Inorganic chemistry Chemical engineering Analytical Chemistry (journal) Crystallography Physical chemistry Chromatography Organic chemistry Catalysis

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Citation History

Topics

Mesoporous Materials and Catalysis
Physical Sciences →  Materials Science →  Materials Chemistry
Zeolite Catalysis and Synthesis
Physical Sciences →  Chemistry →  Inorganic Chemistry
Clay minerals and soil interactions
Physical Sciences →  Materials Science →  Biomaterials

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