Herein we report FTIR in-situ adsorption of molecular hydrogen, carbon monoxide, water, methanol, pyridine and 2,4,6-trimethylpyridine (collidine) on nanosheet H-ZSM-5 recently made and studied in the methanol to hydrocarbons reaction (MTH). The nature of the hydroxyl groups and surfaces species are described in detail. The IR spectrum of Nanosheet H-ZSM-5 is dominating by silanols, saturating the external surfaces. Acidity of Si(OH)Al is comparable to that observed in case of standard microcrystalline H-ZSM-5. The relevance of the external surface, allows to recognize Si(OH)Al species located at channel entrance and terminal Al-OH species, all accessible to hindered molecules, such as collidine.

Probing the surface of nanosheet H-ZSM-5 with FTIR spectroscopy

MINO, LORENZO;GIORDANINO, FILIPPO;BORDIGA, Silvia
2013-01-01

Abstract

Herein we report FTIR in-situ adsorption of molecular hydrogen, carbon monoxide, water, methanol, pyridine and 2,4,6-trimethylpyridine (collidine) on nanosheet H-ZSM-5 recently made and studied in the methanol to hydrocarbons reaction (MTH). The nature of the hydroxyl groups and surfaces species are described in detail. The IR spectrum of Nanosheet H-ZSM-5 is dominating by silanols, saturating the external surfaces. Acidity of Si(OH)Al is comparable to that observed in case of standard microcrystalline H-ZSM-5. The relevance of the external surface, allows to recognize Si(OH)Al species located at channel entrance and terminal Al-OH species, all accessible to hindered molecules, such as collidine.
2013
15
32
13363
13370
http://pubs.rsc.org/en/Content/ArticleLanding/2013/CP/c3cp51280k#!divAbstract
zeolites; FTIR spectroscopy; MTH reaction; nanosheet H-ZSM-5
Bjørn-Tore Lønstad Bleken;Lorenzo Mino;Filippo Giordanino;Pablo Beato;Stian Svelle;Karl Petter Lillerud;Silvia Bordiga
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/2318/138401
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