Cargando…

Structural Characterization and Comparison of Monovalent Cation-Exchanged Zeolite-W

We report comparative structural changes of potassium-contained zeolite-W (K-MER, structural analogue of natural zeolite merlinoite) and monovalent extra-framework cation (EFC)-exchanged M-MERs (M = Li(+), Na(+), Ag(+), and Rb(+)). High-resolution synchrotron X-ray powder diffraction study precisely...

Descripción completa

Detalles Bibliográficos
Autores principales: Seoung, Donghoon, Kim, Hyeonsu, Kim, Pyosang, Song, Chihyun, Lee, Suhyeong, Chae, Sungmin, Lee, Sihyun, Lee, Hyunseung, Lee, Yongmoon
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7503765/
https://www.ncbi.nlm.nih.gov/pubmed/32825462
http://dx.doi.org/10.3390/ma13173684
_version_ 1783584470099558400
author Seoung, Donghoon
Kim, Hyeonsu
Kim, Pyosang
Song, Chihyun
Lee, Suhyeong
Chae, Sungmin
Lee, Sihyun
Lee, Hyunseung
Lee, Yongmoon
author_facet Seoung, Donghoon
Kim, Hyeonsu
Kim, Pyosang
Song, Chihyun
Lee, Suhyeong
Chae, Sungmin
Lee, Sihyun
Lee, Hyunseung
Lee, Yongmoon
author_sort Seoung, Donghoon
collection PubMed
description We report comparative structural changes of potassium-contained zeolite-W (K-MER, structural analogue of natural zeolite merlinoite) and monovalent extra-framework cation (EFC)-exchanged M-MERs (M = Li(+), Na(+), Ag(+), and Rb(+)). High-resolution synchrotron X-ray powder diffraction study precisely determines that crystal symmetry of MERs is tetragonal (I4/mmm). Rietveld refinement results reveal that frameworks of all MERs are geometrically composed of disordered Al/Si tetrahedra, bridged by linkage oxygen atoms. We observe a structural relationship between a group of Li-, Na-, and Ag-MER and the group of K- and Rb-MER by EFC radius and position of M(1) site inside double 8-membered ring unit (d8r). In the former group, a-axes decrease reciprocally, c-axes gradually extend by EFC size, and M(1) cations are located at the middle of the d8r. In the latter group, a- and c-axes lengths become longer and shorter, respectively, than axes of the former group, and these axial changes come from middle-to-edge migration of M(1) cations inside the d8r channel. Unit cell volumes of the Na-, Ag-, and K-MER are ca. 2005 Å(3), and the volume expansion in the MER series is limited by EFC size, the number of water molecules, and the distribution of extra-framework species inside the MER channel. EFC sites of M(1) and M(2) show disordered and ordered distribution in the former group, and all EFC sites change to disordered distribution after migration of the M(1) site in the latter group. The amount of water molecules and porosities are inversely proportional to EFC size due to the limitation of volume expansion of MERs. The channel opening area of a pau composite building unit and the amount of water molecules are universally related as a function of cation size because water molecules are mainly distributed inside a pau channel.
format Online
Article
Text
id pubmed-7503765
institution National Center for Biotechnology Information
language English
publishDate 2020
publisher MDPI
record_format MEDLINE/PubMed
spelling pubmed-75037652020-09-27 Structural Characterization and Comparison of Monovalent Cation-Exchanged Zeolite-W Seoung, Donghoon Kim, Hyeonsu Kim, Pyosang Song, Chihyun Lee, Suhyeong Chae, Sungmin Lee, Sihyun Lee, Hyunseung Lee, Yongmoon Materials (Basel) Article We report comparative structural changes of potassium-contained zeolite-W (K-MER, structural analogue of natural zeolite merlinoite) and monovalent extra-framework cation (EFC)-exchanged M-MERs (M = Li(+), Na(+), Ag(+), and Rb(+)). High-resolution synchrotron X-ray powder diffraction study precisely determines that crystal symmetry of MERs is tetragonal (I4/mmm). Rietveld refinement results reveal that frameworks of all MERs are geometrically composed of disordered Al/Si tetrahedra, bridged by linkage oxygen atoms. We observe a structural relationship between a group of Li-, Na-, and Ag-MER and the group of K- and Rb-MER by EFC radius and position of M(1) site inside double 8-membered ring unit (d8r). In the former group, a-axes decrease reciprocally, c-axes gradually extend by EFC size, and M(1) cations are located at the middle of the d8r. In the latter group, a- and c-axes lengths become longer and shorter, respectively, than axes of the former group, and these axial changes come from middle-to-edge migration of M(1) cations inside the d8r channel. Unit cell volumes of the Na-, Ag-, and K-MER are ca. 2005 Å(3), and the volume expansion in the MER series is limited by EFC size, the number of water molecules, and the distribution of extra-framework species inside the MER channel. EFC sites of M(1) and M(2) show disordered and ordered distribution in the former group, and all EFC sites change to disordered distribution after migration of the M(1) site in the latter group. The amount of water molecules and porosities are inversely proportional to EFC size due to the limitation of volume expansion of MERs. The channel opening area of a pau composite building unit and the amount of water molecules are universally related as a function of cation size because water molecules are mainly distributed inside a pau channel. MDPI 2020-08-20 /pmc/articles/PMC7503765/ /pubmed/32825462 http://dx.doi.org/10.3390/ma13173684 Text en © 2020 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Seoung, Donghoon
Kim, Hyeonsu
Kim, Pyosang
Song, Chihyun
Lee, Suhyeong
Chae, Sungmin
Lee, Sihyun
Lee, Hyunseung
Lee, Yongmoon
Structural Characterization and Comparison of Monovalent Cation-Exchanged Zeolite-W
title Structural Characterization and Comparison of Monovalent Cation-Exchanged Zeolite-W
title_full Structural Characterization and Comparison of Monovalent Cation-Exchanged Zeolite-W
title_fullStr Structural Characterization and Comparison of Monovalent Cation-Exchanged Zeolite-W
title_full_unstemmed Structural Characterization and Comparison of Monovalent Cation-Exchanged Zeolite-W
title_short Structural Characterization and Comparison of Monovalent Cation-Exchanged Zeolite-W
title_sort structural characterization and comparison of monovalent cation-exchanged zeolite-w
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7503765/
https://www.ncbi.nlm.nih.gov/pubmed/32825462
http://dx.doi.org/10.3390/ma13173684
work_keys_str_mv AT seoungdonghoon structuralcharacterizationandcomparisonofmonovalentcationexchangedzeolitew
AT kimhyeonsu structuralcharacterizationandcomparisonofmonovalentcationexchangedzeolitew
AT kimpyosang structuralcharacterizationandcomparisonofmonovalentcationexchangedzeolitew
AT songchihyun structuralcharacterizationandcomparisonofmonovalentcationexchangedzeolitew
AT leesuhyeong structuralcharacterizationandcomparisonofmonovalentcationexchangedzeolitew
AT chaesungmin structuralcharacterizationandcomparisonofmonovalentcationexchangedzeolitew
AT leesihyun structuralcharacterizationandcomparisonofmonovalentcationexchangedzeolitew
AT leehyunseung structuralcharacterizationandcomparisonofmonovalentcationexchangedzeolitew
AT leeyongmoon structuralcharacterizationandcomparisonofmonovalentcationexchangedzeolitew