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Revisiting the nature of Cu sites in the activated Cu-SSZ-13 catalyst for SCR reaction

Cu-SSZ-13 is a highly active NH(3)-SCR catalyst for the abatement of harmful nitrogen oxides (NO(x), x = 1, 2) from the exhausts of lean-burn engines. The study of Cu-speciation occurring upon thermal dehydration is a key step for the understanding of the enhanced catalytic properties of this materi...

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Autores principales: Borfecchia, E., Lomachenko, K. A., Giordanino, F., Falsig, H., Beato, P., Soldatov, A. V., Bordiga, S., Lamberti, C.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Royal Society of Chemistry 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5588737/
https://www.ncbi.nlm.nih.gov/pubmed/28936309
http://dx.doi.org/10.1039/c4sc02907k
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author Borfecchia, E.
Lomachenko, K. A.
Giordanino, F.
Falsig, H.
Beato, P.
Soldatov, A. V.
Bordiga, S.
Lamberti, C.
author_facet Borfecchia, E.
Lomachenko, K. A.
Giordanino, F.
Falsig, H.
Beato, P.
Soldatov, A. V.
Bordiga, S.
Lamberti, C.
author_sort Borfecchia, E.
collection PubMed
description Cu-SSZ-13 is a highly active NH(3)-SCR catalyst for the abatement of harmful nitrogen oxides (NO(x), x = 1, 2) from the exhausts of lean-burn engines. The study of Cu-speciation occurring upon thermal dehydration is a key step for the understanding of the enhanced catalytic properties of this material and for identifying the SCR active sites and their redox capability. Herein, we combined FTIR, X-ray absorption (XAS) and emission (XES) spectroscopies with DFT computational analysis to elucidate the nature and location of the most abundant Cu sites in the activated catalyst. Different Cu species have been found to be dominant as a function of the dehydration temperature and conditions. Data analysis revealed that the dehydration process of Cu cations is essentially completed at 250 °C, with the formation of dehydrated [CuOH](+) species hosted in close proximity to 1-Al sites in both d6r and 8r units of the SSZ-13 matrix. These species persist at higher temperatures only if a certain amount of O(2) is present in the gas feed, while under inert conditions they undergo virtually total “self-reduction” as a consequence of an OH extra-ligand loss, resulting in bi-coordinated bare Cu(+) cations. Synchrotron characterization supported by computational analysis allowed an unprecedented quantitative refinement of the local environment and structural parameters of these Cu(ii) and Cu(i) species.
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spelling pubmed-55887372017-09-21 Revisiting the nature of Cu sites in the activated Cu-SSZ-13 catalyst for SCR reaction Borfecchia, E. Lomachenko, K. A. Giordanino, F. Falsig, H. Beato, P. Soldatov, A. V. Bordiga, S. Lamberti, C. Chem Sci Chemistry Cu-SSZ-13 is a highly active NH(3)-SCR catalyst for the abatement of harmful nitrogen oxides (NO(x), x = 1, 2) from the exhausts of lean-burn engines. The study of Cu-speciation occurring upon thermal dehydration is a key step for the understanding of the enhanced catalytic properties of this material and for identifying the SCR active sites and their redox capability. Herein, we combined FTIR, X-ray absorption (XAS) and emission (XES) spectroscopies with DFT computational analysis to elucidate the nature and location of the most abundant Cu sites in the activated catalyst. Different Cu species have been found to be dominant as a function of the dehydration temperature and conditions. Data analysis revealed that the dehydration process of Cu cations is essentially completed at 250 °C, with the formation of dehydrated [CuOH](+) species hosted in close proximity to 1-Al sites in both d6r and 8r units of the SSZ-13 matrix. These species persist at higher temperatures only if a certain amount of O(2) is present in the gas feed, while under inert conditions they undergo virtually total “self-reduction” as a consequence of an OH extra-ligand loss, resulting in bi-coordinated bare Cu(+) cations. Synchrotron characterization supported by computational analysis allowed an unprecedented quantitative refinement of the local environment and structural parameters of these Cu(ii) and Cu(i) species. Royal Society of Chemistry 2015-01-01 2014-10-13 /pmc/articles/PMC5588737/ /pubmed/28936309 http://dx.doi.org/10.1039/c4sc02907k Text en This journal is © The Royal Society of Chemistry 2014 http://creativecommons.org/licenses/by/3.0/ This is an Open Access article distributed under the terms of the Creative Commons Attribution 3.0 Unported License (http://creativecommons.org/licenses/by/3.0/) which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Chemistry
Borfecchia, E.
Lomachenko, K. A.
Giordanino, F.
Falsig, H.
Beato, P.
Soldatov, A. V.
Bordiga, S.
Lamberti, C.
Revisiting the nature of Cu sites in the activated Cu-SSZ-13 catalyst for SCR reaction
title Revisiting the nature of Cu sites in the activated Cu-SSZ-13 catalyst for SCR reaction
title_full Revisiting the nature of Cu sites in the activated Cu-SSZ-13 catalyst for SCR reaction
title_fullStr Revisiting the nature of Cu sites in the activated Cu-SSZ-13 catalyst for SCR reaction
title_full_unstemmed Revisiting the nature of Cu sites in the activated Cu-SSZ-13 catalyst for SCR reaction
title_short Revisiting the nature of Cu sites in the activated Cu-SSZ-13 catalyst for SCR reaction
title_sort revisiting the nature of cu sites in the activated cu-ssz-13 catalyst for scr reaction
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5588737/
https://www.ncbi.nlm.nih.gov/pubmed/28936309
http://dx.doi.org/10.1039/c4sc02907k
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