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Titration of Cu(I) Sites in Cu-ZSM-5 by Volumetric CO Adsorption

[Image: see text] Cu-exchanged zeolites are widely studied materials because of their importance in industrial energetic and environmental processes. Cu redox speciation lies at the center of many of these processes but is experimentally difficult to investigate in a quantitative manner with regular...

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Autores principales: Deplano, Gabriele, Signorile, Matteo, Crocellà, Valentina, Porcaro, Natale Gabriele, Atzori, Cesare, Solemsli, Bjørn Gading, Svelle, Stian, Bordiga, Silvia
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Chemical Society 2022
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9100488/
https://www.ncbi.nlm.nih.gov/pubmed/35482942
http://dx.doi.org/10.1021/acsami.2c03370
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author Deplano, Gabriele
Signorile, Matteo
Crocellà, Valentina
Porcaro, Natale Gabriele
Atzori, Cesare
Solemsli, Bjørn Gading
Svelle, Stian
Bordiga, Silvia
author_facet Deplano, Gabriele
Signorile, Matteo
Crocellà, Valentina
Porcaro, Natale Gabriele
Atzori, Cesare
Solemsli, Bjørn Gading
Svelle, Stian
Bordiga, Silvia
author_sort Deplano, Gabriele
collection PubMed
description [Image: see text] Cu-exchanged zeolites are widely studied materials because of their importance in industrial energetic and environmental processes. Cu redox speciation lies at the center of many of these processes but is experimentally difficult to investigate in a quantitative manner with regular laboratory equipment. This work presents a novel technique for this purpose that exploits the selective adsorption of CO over accessible Cu(I) sites to quantify them. In particular, isothermal volumetric adsorption measurements are performed at 50 °C on a series of opportunely pre-reduced Cu-ZSM-5 to assess the relative fraction of Cu(I); the setup is fairly simple and only requires a regular volumetric adsorption apparatus to perform the actual measurement. Repeatability tests are carried out on the measurement and activation protocols to assess the precision of the technique, and the relative standard deviation (RSD) obtained is less than 5%. Based on the results obtained for these materials, the same CO adsorption protocol is studied for the sample using infrared spectroscopy, and a good correlation is found between the results of the volumetric measurements and the absorbance of the peak assigned to the Cu(I)–CO adducts. A linear model is built for this correlation, and the molar attenuation coefficient is obtained, allowing for spectrophotometric quantification. The good sensitivity of the spectrophotometric approach and the precision and simplicity of the volumetric approach form a complementary set of tools to quantitatively study Cu redox speciation in these materials at the laboratory scale, allowing for a wide range of Cu compositions to be accurately investigated.
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spelling pubmed-91004882022-05-14 Titration of Cu(I) Sites in Cu-ZSM-5 by Volumetric CO Adsorption Deplano, Gabriele Signorile, Matteo Crocellà, Valentina Porcaro, Natale Gabriele Atzori, Cesare Solemsli, Bjørn Gading Svelle, Stian Bordiga, Silvia ACS Appl Mater Interfaces [Image: see text] Cu-exchanged zeolites are widely studied materials because of their importance in industrial energetic and environmental processes. Cu redox speciation lies at the center of many of these processes but is experimentally difficult to investigate in a quantitative manner with regular laboratory equipment. This work presents a novel technique for this purpose that exploits the selective adsorption of CO over accessible Cu(I) sites to quantify them. In particular, isothermal volumetric adsorption measurements are performed at 50 °C on a series of opportunely pre-reduced Cu-ZSM-5 to assess the relative fraction of Cu(I); the setup is fairly simple and only requires a regular volumetric adsorption apparatus to perform the actual measurement. Repeatability tests are carried out on the measurement and activation protocols to assess the precision of the technique, and the relative standard deviation (RSD) obtained is less than 5%. Based on the results obtained for these materials, the same CO adsorption protocol is studied for the sample using infrared spectroscopy, and a good correlation is found between the results of the volumetric measurements and the absorbance of the peak assigned to the Cu(I)–CO adducts. A linear model is built for this correlation, and the molar attenuation coefficient is obtained, allowing for spectrophotometric quantification. The good sensitivity of the spectrophotometric approach and the precision and simplicity of the volumetric approach form a complementary set of tools to quantitatively study Cu redox speciation in these materials at the laboratory scale, allowing for a wide range of Cu compositions to be accurately investigated. American Chemical Society 2022-04-28 2022-05-11 /pmc/articles/PMC9100488/ /pubmed/35482942 http://dx.doi.org/10.1021/acsami.2c03370 Text en © 2022 The Authors. Published by American Chemical Society https://creativecommons.org/licenses/by/4.0/Permits the broadest form of re-use including for commercial purposes, provided that author attribution and integrity are maintained (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Deplano, Gabriele
Signorile, Matteo
Crocellà, Valentina
Porcaro, Natale Gabriele
Atzori, Cesare
Solemsli, Bjørn Gading
Svelle, Stian
Bordiga, Silvia
Titration of Cu(I) Sites in Cu-ZSM-5 by Volumetric CO Adsorption
title Titration of Cu(I) Sites in Cu-ZSM-5 by Volumetric CO Adsorption
title_full Titration of Cu(I) Sites in Cu-ZSM-5 by Volumetric CO Adsorption
title_fullStr Titration of Cu(I) Sites in Cu-ZSM-5 by Volumetric CO Adsorption
title_full_unstemmed Titration of Cu(I) Sites in Cu-ZSM-5 by Volumetric CO Adsorption
title_short Titration of Cu(I) Sites in Cu-ZSM-5 by Volumetric CO Adsorption
title_sort titration of cu(i) sites in cu-zsm-5 by volumetric co adsorption
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9100488/
https://www.ncbi.nlm.nih.gov/pubmed/35482942
http://dx.doi.org/10.1021/acsami.2c03370
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