Cargando…

IR-Spectroscopic Study of Complex Formation of Nitrogen Oxides (NO, N(2)O) with Cationic Forms of Zeolites and the Reactivity of Adsorbed Species in CO and CH(4) Oxidation

The formation of complexes and disproportionation of nitrogen oxides (NO, N(2)O) on cationic forms of LTA, FAU, and MOR zeolites was investigated by diffuse-reflectance IR spectroscopy. N(2)O is adsorbed on the samples under study in the molecular form and the frequencies of the first overtone of th...

Descripción completa

Detalles Bibliográficos
Autores principales: Kustov, Alexander L., Kustov, Leonid M.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8746350/
https://www.ncbi.nlm.nih.gov/pubmed/35011287
http://dx.doi.org/10.3390/molecules27010055
_version_ 1784630564282695680
author Kustov, Alexander L.
Kustov, Leonid M.
author_facet Kustov, Alexander L.
Kustov, Leonid M.
author_sort Kustov, Alexander L.
collection PubMed
description The formation of complexes and disproportionation of nitrogen oxides (NO, N(2)O) on cationic forms of LTA, FAU, and MOR zeolites was investigated by diffuse-reflectance IR spectroscopy. N(2)O is adsorbed on the samples under study in the molecular form and the frequencies of the first overtone of the stretching vibrations ν(1)(0–2) and the combination bands of the stretching vibrations with other vibrational modes for N(2)O complexes with cationic sites in zeolites (ν(3)(0–1) + ν(1)(0–1), ν(1)(0–1) + δ(0–2)) are more significantly influenced by the nature of the zeolite. The presence of several IR bands in the region of 2400–2600 cm(−1) (the ν(1)(0–1) + δ(0–2) transitions) for different zeolite types was explained by the availability of different localization sites for cations in these zeolites. The frequencies in this region also depend on the nature of the cation (its charge and radius). The data can be explained by the specific geometry of the N(2)O complex formed, presumably two-point adsorption of N(2)O on a cation and a neighboring oxygen atom of the framework. Adsorption of CO or CH(4) on the samples with preliminarily adsorbed N(2)O at 20–180 °C does not result in any oxidation of these molecules. NO(+) and N(2)O(3) species formed by disproportionation of NO are capable of oxidizing CO and CH(4) molecules to CO(2), whereas NO(x) is reduced simultaneously to N(2) or N(2)O. The peculiarities in the behavior of cationic forms of different zeolites with respect to adsorbed nitrogen oxides determined by different density and localization of cations have been established.
format Online
Article
Text
id pubmed-8746350
institution National Center for Biotechnology Information
language English
publishDate 2021
publisher MDPI
record_format MEDLINE/PubMed
spelling pubmed-87463502022-01-11 IR-Spectroscopic Study of Complex Formation of Nitrogen Oxides (NO, N(2)O) with Cationic Forms of Zeolites and the Reactivity of Adsorbed Species in CO and CH(4) Oxidation Kustov, Alexander L. Kustov, Leonid M. Molecules Article The formation of complexes and disproportionation of nitrogen oxides (NO, N(2)O) on cationic forms of LTA, FAU, and MOR zeolites was investigated by diffuse-reflectance IR spectroscopy. N(2)O is adsorbed on the samples under study in the molecular form and the frequencies of the first overtone of the stretching vibrations ν(1)(0–2) and the combination bands of the stretching vibrations with other vibrational modes for N(2)O complexes with cationic sites in zeolites (ν(3)(0–1) + ν(1)(0–1), ν(1)(0–1) + δ(0–2)) are more significantly influenced by the nature of the zeolite. The presence of several IR bands in the region of 2400–2600 cm(−1) (the ν(1)(0–1) + δ(0–2) transitions) for different zeolite types was explained by the availability of different localization sites for cations in these zeolites. The frequencies in this region also depend on the nature of the cation (its charge and radius). The data can be explained by the specific geometry of the N(2)O complex formed, presumably two-point adsorption of N(2)O on a cation and a neighboring oxygen atom of the framework. Adsorption of CO or CH(4) on the samples with preliminarily adsorbed N(2)O at 20–180 °C does not result in any oxidation of these molecules. NO(+) and N(2)O(3) species formed by disproportionation of NO are capable of oxidizing CO and CH(4) molecules to CO(2), whereas NO(x) is reduced simultaneously to N(2) or N(2)O. The peculiarities in the behavior of cationic forms of different zeolites with respect to adsorbed nitrogen oxides determined by different density and localization of cations have been established. MDPI 2021-12-22 /pmc/articles/PMC8746350/ /pubmed/35011287 http://dx.doi.org/10.3390/molecules27010055 Text en © 2021 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Kustov, Alexander L.
Kustov, Leonid M.
IR-Spectroscopic Study of Complex Formation of Nitrogen Oxides (NO, N(2)O) with Cationic Forms of Zeolites and the Reactivity of Adsorbed Species in CO and CH(4) Oxidation
title IR-Spectroscopic Study of Complex Formation of Nitrogen Oxides (NO, N(2)O) with Cationic Forms of Zeolites and the Reactivity of Adsorbed Species in CO and CH(4) Oxidation
title_full IR-Spectroscopic Study of Complex Formation of Nitrogen Oxides (NO, N(2)O) with Cationic Forms of Zeolites and the Reactivity of Adsorbed Species in CO and CH(4) Oxidation
title_fullStr IR-Spectroscopic Study of Complex Formation of Nitrogen Oxides (NO, N(2)O) with Cationic Forms of Zeolites and the Reactivity of Adsorbed Species in CO and CH(4) Oxidation
title_full_unstemmed IR-Spectroscopic Study of Complex Formation of Nitrogen Oxides (NO, N(2)O) with Cationic Forms of Zeolites and the Reactivity of Adsorbed Species in CO and CH(4) Oxidation
title_short IR-Spectroscopic Study of Complex Formation of Nitrogen Oxides (NO, N(2)O) with Cationic Forms of Zeolites and the Reactivity of Adsorbed Species in CO and CH(4) Oxidation
title_sort ir-spectroscopic study of complex formation of nitrogen oxides (no, n(2)o) with cationic forms of zeolites and the reactivity of adsorbed species in co and ch(4) oxidation
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8746350/
https://www.ncbi.nlm.nih.gov/pubmed/35011287
http://dx.doi.org/10.3390/molecules27010055
work_keys_str_mv AT kustovalexanderl irspectroscopicstudyofcomplexformationofnitrogenoxidesnon2owithcationicformsofzeolitesandthereactivityofadsorbedspeciesincoandch4oxidation
AT kustovleonidm irspectroscopicstudyofcomplexformationofnitrogenoxidesnon2owithcationicformsofzeolitesandthereactivityofadsorbedspeciesincoandch4oxidation