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Understanding the Fundamentals of Microporosity Upgrading in Zeolites: Increasing Diffusion and Catalytic Performances

Hierarchical zeolites are regarded as promising catalysts due to their well‐developed porosity, increased accessible surface area, and minimal diffusion constraints. Thus far, the focus has been on the creation of mesopores in zeolites, however, little is known about a microporosity upgrading and it...

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Autores principales: Qin, Zhengxing, Zeng, Shu, Melinte, Georgian, Bučko, Tomáš, Badawi, Michael, Shen, Yanfeng, Gilson, Jean‐Pierre, Ersen, Ovidiu, Wei, Yingxu, Liu, Zhongmin, Liu, Xinmei, Yan, Zifeng, Xu, Shutao, Valtchev, Valentin, Mintova, Svetlana
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8425932/
https://www.ncbi.nlm.nih.gov/pubmed/34219412
http://dx.doi.org/10.1002/advs.202100001
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author Qin, Zhengxing
Zeng, Shu
Melinte, Georgian
Bučko, Tomáš
Badawi, Michael
Shen, Yanfeng
Gilson, Jean‐Pierre
Ersen, Ovidiu
Wei, Yingxu
Liu, Zhongmin
Liu, Xinmei
Yan, Zifeng
Xu, Shutao
Valtchev, Valentin
Mintova, Svetlana
author_facet Qin, Zhengxing
Zeng, Shu
Melinte, Georgian
Bučko, Tomáš
Badawi, Michael
Shen, Yanfeng
Gilson, Jean‐Pierre
Ersen, Ovidiu
Wei, Yingxu
Liu, Zhongmin
Liu, Xinmei
Yan, Zifeng
Xu, Shutao
Valtchev, Valentin
Mintova, Svetlana
author_sort Qin, Zhengxing
collection PubMed
description Hierarchical zeolites are regarded as promising catalysts due to their well‐developed porosity, increased accessible surface area, and minimal diffusion constraints. Thus far, the focus has been on the creation of mesopores in zeolites, however, little is known about a microporosity upgrading and its effect on the diffusion and catalytic performance. Here the authors show that the “birth” of mesopore formation in faujasite (FAU) type zeolite starts by removing framework T atoms from the sodalite (SOD) cages followed by propagation throughout the crystals. This is evidenced by following the diffusion of xenon (Xe) in the mesoporous FAU zeolite prepared by unbiased leaching with NH(4)F in comparison to the pristine FAU zeolite. A new diffusion pathway for the Xe in the mesoporous zeolite is proposed. Xenon first penetrates through the opened SOD cages and then diffuses to supercages of the mesoporous zeolite. Density functional theory (DFT) calculations indicate that Xe diffusion between SOD cage and supercage occurs only in hierarchical FAU structure with defect‐contained six‐member‐ring separating these two types of cages. The catalytic performance of the mesoporous FAU zeolite further indicates that the upgraded microporosity facilitates the intracrystalline molecular traffic and increases the catalytic performance.
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spelling pubmed-84259322021-09-13 Understanding the Fundamentals of Microporosity Upgrading in Zeolites: Increasing Diffusion and Catalytic Performances Qin, Zhengxing Zeng, Shu Melinte, Georgian Bučko, Tomáš Badawi, Michael Shen, Yanfeng Gilson, Jean‐Pierre Ersen, Ovidiu Wei, Yingxu Liu, Zhongmin Liu, Xinmei Yan, Zifeng Xu, Shutao Valtchev, Valentin Mintova, Svetlana Adv Sci (Weinh) Research Articles Hierarchical zeolites are regarded as promising catalysts due to their well‐developed porosity, increased accessible surface area, and minimal diffusion constraints. Thus far, the focus has been on the creation of mesopores in zeolites, however, little is known about a microporosity upgrading and its effect on the diffusion and catalytic performance. Here the authors show that the “birth” of mesopore formation in faujasite (FAU) type zeolite starts by removing framework T atoms from the sodalite (SOD) cages followed by propagation throughout the crystals. This is evidenced by following the diffusion of xenon (Xe) in the mesoporous FAU zeolite prepared by unbiased leaching with NH(4)F in comparison to the pristine FAU zeolite. A new diffusion pathway for the Xe in the mesoporous zeolite is proposed. Xenon first penetrates through the opened SOD cages and then diffuses to supercages of the mesoporous zeolite. Density functional theory (DFT) calculations indicate that Xe diffusion between SOD cage and supercage occurs only in hierarchical FAU structure with defect‐contained six‐member‐ring separating these two types of cages. The catalytic performance of the mesoporous FAU zeolite further indicates that the upgraded microporosity facilitates the intracrystalline molecular traffic and increases the catalytic performance. John Wiley and Sons Inc. 2021-07-04 /pmc/articles/PMC8425932/ /pubmed/34219412 http://dx.doi.org/10.1002/advs.202100001 Text en © 2021 The Authors. Advanced Science published by Wiley‐VCH GmbH https://creativecommons.org/licenses/by/4.0/This is an open access article under the terms of the http://creativecommons.org/licenses/by/4.0/ (https://creativecommons.org/licenses/by/4.0/) License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research Articles
Qin, Zhengxing
Zeng, Shu
Melinte, Georgian
Bučko, Tomáš
Badawi, Michael
Shen, Yanfeng
Gilson, Jean‐Pierre
Ersen, Ovidiu
Wei, Yingxu
Liu, Zhongmin
Liu, Xinmei
Yan, Zifeng
Xu, Shutao
Valtchev, Valentin
Mintova, Svetlana
Understanding the Fundamentals of Microporosity Upgrading in Zeolites: Increasing Diffusion and Catalytic Performances
title Understanding the Fundamentals of Microporosity Upgrading in Zeolites: Increasing Diffusion and Catalytic Performances
title_full Understanding the Fundamentals of Microporosity Upgrading in Zeolites: Increasing Diffusion and Catalytic Performances
title_fullStr Understanding the Fundamentals of Microporosity Upgrading in Zeolites: Increasing Diffusion and Catalytic Performances
title_full_unstemmed Understanding the Fundamentals of Microporosity Upgrading in Zeolites: Increasing Diffusion and Catalytic Performances
title_short Understanding the Fundamentals of Microporosity Upgrading in Zeolites: Increasing Diffusion and Catalytic Performances
title_sort understanding the fundamentals of microporosity upgrading in zeolites: increasing diffusion and catalytic performances
topic Research Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8425932/
https://www.ncbi.nlm.nih.gov/pubmed/34219412
http://dx.doi.org/10.1002/advs.202100001
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