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Tracking the crystallization behavior of high-silica FAU during AEI-type zeolite synthesis using acid treated FAU-type zeolite

During AEI zeolite synthesis using acid treated FAU (AcT-FAU), we found the recrystallization of high-silica FAU with high crystallinity and Si/Al ratio of 6.1 using N,N-dimethyl-3,5-dimethylpiperidinium hydroxide (DMDMPOH) after 2 h, followed by the crystallization of AEI via FAU-to-AEI interzeolit...

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Autores principales: Sada, Yuki, Chokkalingam, Anand, Iyoki, Kenta, Yoshioka, Masato, Ishikawa, Tomoya, Naraki, Yusuke, Yanaba, Yutaka, Yamada, Hiroki, Ohara, Koji, Sano, Tsuneji, Okubo, Tatsuya, Liu, Zhendong, Wakihara, Toru
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The Royal Society of Chemistry 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9034275/
https://www.ncbi.nlm.nih.gov/pubmed/35480439
http://dx.doi.org/10.1039/d1ra03150c
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author Sada, Yuki
Chokkalingam, Anand
Iyoki, Kenta
Yoshioka, Masato
Ishikawa, Tomoya
Naraki, Yusuke
Yanaba, Yutaka
Yamada, Hiroki
Ohara, Koji
Sano, Tsuneji
Okubo, Tatsuya
Liu, Zhendong
Wakihara, Toru
author_facet Sada, Yuki
Chokkalingam, Anand
Iyoki, Kenta
Yoshioka, Masato
Ishikawa, Tomoya
Naraki, Yusuke
Yanaba, Yutaka
Yamada, Hiroki
Ohara, Koji
Sano, Tsuneji
Okubo, Tatsuya
Liu, Zhendong
Wakihara, Toru
author_sort Sada, Yuki
collection PubMed
description During AEI zeolite synthesis using acid treated FAU (AcT-FAU), we found the recrystallization of high-silica FAU with high crystallinity and Si/Al ratio of 6.1 using N,N-dimethyl-3,5-dimethylpiperidinium hydroxide (DMDMPOH) after 2 h, followed by the crystallization of AEI via FAU-to-AEI interzeolite conversion at a longer synthesis time. In order to understand the formation mechanism of high-silica FAU and generalize its direct synthesis, we have investigated this synthesis process. An analysis of the short-range structure of AcT-FAU revealed that it has an ordered aluminosilicate structure having a large fraction of 4-rings despite its low crystallinity. The changes in the composition of the products obtained at different synthesis times suggested that DMDMP(+) plays a certain role in the stabilization of the FAU zeolite framework. Moreover, the results of thermogravimetric analysis showed that the thermal stability of DMDMP(+) changed with the zeolite conversion. To the best of our knowledge, this is the first study to clarify the structure-directing effect of DMDMP(+) on FAU zeolite formation.
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spelling pubmed-90342752022-04-26 Tracking the crystallization behavior of high-silica FAU during AEI-type zeolite synthesis using acid treated FAU-type zeolite Sada, Yuki Chokkalingam, Anand Iyoki, Kenta Yoshioka, Masato Ishikawa, Tomoya Naraki, Yusuke Yanaba, Yutaka Yamada, Hiroki Ohara, Koji Sano, Tsuneji Okubo, Tatsuya Liu, Zhendong Wakihara, Toru RSC Adv Chemistry During AEI zeolite synthesis using acid treated FAU (AcT-FAU), we found the recrystallization of high-silica FAU with high crystallinity and Si/Al ratio of 6.1 using N,N-dimethyl-3,5-dimethylpiperidinium hydroxide (DMDMPOH) after 2 h, followed by the crystallization of AEI via FAU-to-AEI interzeolite conversion at a longer synthesis time. In order to understand the formation mechanism of high-silica FAU and generalize its direct synthesis, we have investigated this synthesis process. An analysis of the short-range structure of AcT-FAU revealed that it has an ordered aluminosilicate structure having a large fraction of 4-rings despite its low crystallinity. The changes in the composition of the products obtained at different synthesis times suggested that DMDMP(+) plays a certain role in the stabilization of the FAU zeolite framework. Moreover, the results of thermogravimetric analysis showed that the thermal stability of DMDMP(+) changed with the zeolite conversion. To the best of our knowledge, this is the first study to clarify the structure-directing effect of DMDMP(+) on FAU zeolite formation. The Royal Society of Chemistry 2021-06-29 /pmc/articles/PMC9034275/ /pubmed/35480439 http://dx.doi.org/10.1039/d1ra03150c Text en This journal is © The Royal Society of Chemistry https://creativecommons.org/licenses/by/3.0/
spellingShingle Chemistry
Sada, Yuki
Chokkalingam, Anand
Iyoki, Kenta
Yoshioka, Masato
Ishikawa, Tomoya
Naraki, Yusuke
Yanaba, Yutaka
Yamada, Hiroki
Ohara, Koji
Sano, Tsuneji
Okubo, Tatsuya
Liu, Zhendong
Wakihara, Toru
Tracking the crystallization behavior of high-silica FAU during AEI-type zeolite synthesis using acid treated FAU-type zeolite
title Tracking the crystallization behavior of high-silica FAU during AEI-type zeolite synthesis using acid treated FAU-type zeolite
title_full Tracking the crystallization behavior of high-silica FAU during AEI-type zeolite synthesis using acid treated FAU-type zeolite
title_fullStr Tracking the crystallization behavior of high-silica FAU during AEI-type zeolite synthesis using acid treated FAU-type zeolite
title_full_unstemmed Tracking the crystallization behavior of high-silica FAU during AEI-type zeolite synthesis using acid treated FAU-type zeolite
title_short Tracking the crystallization behavior of high-silica FAU during AEI-type zeolite synthesis using acid treated FAU-type zeolite
title_sort tracking the crystallization behavior of high-silica fau during aei-type zeolite synthesis using acid treated fau-type zeolite
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9034275/
https://www.ncbi.nlm.nih.gov/pubmed/35480439
http://dx.doi.org/10.1039/d1ra03150c
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