Defective silicalite, an efficient and selective catalyst in the gas phase Beckmann rearrangement reaction, has been characterised by infrared spectroscopy and by molecular modelling techniques. We report a detailed TR study on the effect of outgassing treatments at increasing temperature on silanols bands and on framework modes. The effect of a temperature decrease up to 100 K (during the IR measurement) on the H-bonding interactions has also been investigated. The interaction of silanols with mesitylene, a probe molecule which cannot penetrate the channels, has been studied in order to distinguish between internal and external OH groups. Molecular mechanics and nb initio methods have also been used to model the structure and the vibrational features of a properly designed nest in order to support the assignments of the LR spectrum.

Hydroxyls nests in defective silicalites and strained structures derived upon dehydroxylation: vibrational properties and theoretical modelling

BORDIGA, Silvia;UGLIENGO, Piero;DAMIN, Alessandro Ali;LAMBERTI, Carlo;SPOTO, Giuseppe;ZECCHINA, Adriano;
2001-01-01

Abstract

Defective silicalite, an efficient and selective catalyst in the gas phase Beckmann rearrangement reaction, has been characterised by infrared spectroscopy and by molecular modelling techniques. We report a detailed TR study on the effect of outgassing treatments at increasing temperature on silanols bands and on framework modes. The effect of a temperature decrease up to 100 K (during the IR measurement) on the H-bonding interactions has also been investigated. The interaction of silanols with mesitylene, a probe molecule which cannot penetrate the channels, has been studied in order to distinguish between internal and external OH groups. Molecular mechanics and nb initio methods have also been used to model the structure and the vibrational features of a properly designed nest in order to support the assignments of the LR spectrum.
2001
15
43
52
http://www.springerlink.com/content/u7u248u2037hn752/
silicalite; FTIR; quantum mechanics; molecular mechanics
S. BORDIGA; P. UGLIENGO; A. DAMIN; C. LAMBERTI; G. SPOTO; A. ZECCHINA; G. SPANÒ; R. BUZZONI; L. DALLORO; F. RIVETTI
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/2318/10830
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