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HSIL-Based Synthesis of Ultracrystalline K,Na-JBW, a Zeolite Exhibiting Exceptional Framework Ordering and Flexibility

[Image: see text] A reproducible synthesis strategy for ultracrystalline K,Na-aluminosilicate JBW zeolite is reported. The synthesis uses a Na-based hydrated silicate ionic liquid (HSIL) as a silicon source and gibbsite as the aluminum source. (27)Al and (23)Na NMR spectra exhibit crystalline second...

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Autores principales: Asselman, Karel, Radhakrishnan, Sambhu, Pellens, Nick, Chandran, C. Vinod, Houlleberghs, Maarten, Xu, Yijue, Martens, Johan A., Sree, Sreeprasanth Pulinthanathu, Kirschhock, Christine E.A., Breynaert, Eric
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Chemical Society 2022
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9404536/
https://www.ncbi.nlm.nih.gov/pubmed/36032550
http://dx.doi.org/10.1021/acs.chemmater.2c01059
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author Asselman, Karel
Radhakrishnan, Sambhu
Pellens, Nick
Chandran, C. Vinod
Houlleberghs, Maarten
Xu, Yijue
Martens, Johan A.
Sree, Sreeprasanth Pulinthanathu
Kirschhock, Christine E.A.
Breynaert, Eric
author_facet Asselman, Karel
Radhakrishnan, Sambhu
Pellens, Nick
Chandran, C. Vinod
Houlleberghs, Maarten
Xu, Yijue
Martens, Johan A.
Sree, Sreeprasanth Pulinthanathu
Kirschhock, Christine E.A.
Breynaert, Eric
author_sort Asselman, Karel
collection PubMed
description [Image: see text] A reproducible synthesis strategy for ultracrystalline K,Na-aluminosilicate JBW zeolite is reported. The synthesis uses a Na-based hydrated silicate ionic liquid (HSIL) as a silicon source and gibbsite as the aluminum source. (27)Al and (23)Na NMR spectra exhibit crystalline second-order quadrupole patterns in the hydrated as well as dehydrated states and distinct resonances for different T-sites demonstrating an exceptional degree of order of the elements of the JBW framework, observed for the first time in a zeolite. Detailed structural analysis via NMR crystallography, combining powder X-ray diffraction and solid-state NMR of all elements ((27)Al, (29)Si, (23)Na, (39)K, and (1)H), reveals remarkable de- and rehydration behavior of the JBW framework, transforming from its as-made hydrated structure via a modified anhydrous state into a different rehydrated symmetry while showing astonishing flexibility for a semicondensed aluminosilicate. Its crystallinity, exceptional degree of ordering of the T atoms and sodium cations, and the fully documented structure qualify this defect-free K,Na-aluminosilicate JBW zeolite as a suitable model system for developing NMR modeling methods.
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spelling pubmed-94045362022-08-26 HSIL-Based Synthesis of Ultracrystalline K,Na-JBW, a Zeolite Exhibiting Exceptional Framework Ordering and Flexibility Asselman, Karel Radhakrishnan, Sambhu Pellens, Nick Chandran, C. Vinod Houlleberghs, Maarten Xu, Yijue Martens, Johan A. Sree, Sreeprasanth Pulinthanathu Kirschhock, Christine E.A. Breynaert, Eric Chem Mater [Image: see text] A reproducible synthesis strategy for ultracrystalline K,Na-aluminosilicate JBW zeolite is reported. The synthesis uses a Na-based hydrated silicate ionic liquid (HSIL) as a silicon source and gibbsite as the aluminum source. (27)Al and (23)Na NMR spectra exhibit crystalline second-order quadrupole patterns in the hydrated as well as dehydrated states and distinct resonances for different T-sites demonstrating an exceptional degree of order of the elements of the JBW framework, observed for the first time in a zeolite. Detailed structural analysis via NMR crystallography, combining powder X-ray diffraction and solid-state NMR of all elements ((27)Al, (29)Si, (23)Na, (39)K, and (1)H), reveals remarkable de- and rehydration behavior of the JBW framework, transforming from its as-made hydrated structure via a modified anhydrous state into a different rehydrated symmetry while showing astonishing flexibility for a semicondensed aluminosilicate. Its crystallinity, exceptional degree of ordering of the T atoms and sodium cations, and the fully documented structure qualify this defect-free K,Na-aluminosilicate JBW zeolite as a suitable model system for developing NMR modeling methods. American Chemical Society 2022-06-16 2022-08-23 /pmc/articles/PMC9404536/ /pubmed/36032550 http://dx.doi.org/10.1021/acs.chemmater.2c01059 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 Asselman, Karel
Radhakrishnan, Sambhu
Pellens, Nick
Chandran, C. Vinod
Houlleberghs, Maarten
Xu, Yijue
Martens, Johan A.
Sree, Sreeprasanth Pulinthanathu
Kirschhock, Christine E.A.
Breynaert, Eric
HSIL-Based Synthesis of Ultracrystalline K,Na-JBW, a Zeolite Exhibiting Exceptional Framework Ordering and Flexibility
title HSIL-Based Synthesis of Ultracrystalline K,Na-JBW, a Zeolite Exhibiting Exceptional Framework Ordering and Flexibility
title_full HSIL-Based Synthesis of Ultracrystalline K,Na-JBW, a Zeolite Exhibiting Exceptional Framework Ordering and Flexibility
title_fullStr HSIL-Based Synthesis of Ultracrystalline K,Na-JBW, a Zeolite Exhibiting Exceptional Framework Ordering and Flexibility
title_full_unstemmed HSIL-Based Synthesis of Ultracrystalline K,Na-JBW, a Zeolite Exhibiting Exceptional Framework Ordering and Flexibility
title_short HSIL-Based Synthesis of Ultracrystalline K,Na-JBW, a Zeolite Exhibiting Exceptional Framework Ordering and Flexibility
title_sort hsil-based synthesis of ultracrystalline k,na-jbw, a zeolite exhibiting exceptional framework ordering and flexibility
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9404536/
https://www.ncbi.nlm.nih.gov/pubmed/36032550
http://dx.doi.org/10.1021/acs.chemmater.2c01059
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