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One Atom Can Make All the Difference: Gas-Induced Phase Transformations in Bisimidazole-Linked Diamondoid Coordination Networks

[Image: see text] Coordination networks (CNs) that undergo gas-induced transformation from closed (nonporous) to open (porous) structures are of potential utility in gas storage applications, but their development is hindered by limited control over their switching mechanisms and pressures. In this...

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Autores principales: Koupepidou, Kyriaki, Nikolayenko, Varvara I., Sensharma, Debobroto, Bezrukov, Andrey A., Vandichel, Matthias, Nikkhah, Sousa Javan, Castell, Dominic C., Oyekan, Kolade A., Kumar, Naveen, Subanbekova, Aizhamal, Vandenberghe, William G., Tan, Kui, Barbour, Leonard J., Zaworotko, Michael J.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Chemical Society 2023
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10176468/
https://www.ncbi.nlm.nih.gov/pubmed/37099724
http://dx.doi.org/10.1021/jacs.3c01113
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author Koupepidou, Kyriaki
Nikolayenko, Varvara I.
Sensharma, Debobroto
Bezrukov, Andrey A.
Vandichel, Matthias
Nikkhah, Sousa Javan
Castell, Dominic C.
Oyekan, Kolade A.
Kumar, Naveen
Subanbekova, Aizhamal
Vandenberghe, William G.
Tan, Kui
Barbour, Leonard J.
Zaworotko, Michael J.
author_facet Koupepidou, Kyriaki
Nikolayenko, Varvara I.
Sensharma, Debobroto
Bezrukov, Andrey A.
Vandichel, Matthias
Nikkhah, Sousa Javan
Castell, Dominic C.
Oyekan, Kolade A.
Kumar, Naveen
Subanbekova, Aizhamal
Vandenberghe, William G.
Tan, Kui
Barbour, Leonard J.
Zaworotko, Michael J.
author_sort Koupepidou, Kyriaki
collection PubMed
description [Image: see text] Coordination networks (CNs) that undergo gas-induced transformation from closed (nonporous) to open (porous) structures are of potential utility in gas storage applications, but their development is hindered by limited control over their switching mechanisms and pressures. In this work, we report two CNs, [Co(bimpy)(bdc)](n) (X-dia-4-Co) and [Co(bimbz)(bdc)](n) (X-dia-5-Co) (H(2)bdc = 1,4-benzendicarboxylic acid; bimpy = 2,5-bis(1H-imidazole-1-yl)pyridine; bimbz = 1,4-bis(1H-imidazole-1-yl)benzene), that both undergo transformation from closed to isostructural open phases involving at least a 27% increase in cell volume. Although X-dia-4-Co and X-dia-5-Co only differ from one another by one atom in their N-donor linkers (bimpy = pyridine, and bimbz = benzene), this results in different pore chemistry and switching mechanisms. Specifically, X-dia-4-Co exhibited a gradual phase transformation with a steady increase in the uptake when exposed to CO(2), whereas X-dia-5-Co exhibited a sharp step (type F-IV isotherm) at P/P(0)[Image: see text] 0.008 or P[Image: see text] 3 bar (195 or 298 K, respectively). Single-crystal X-ray diffraction, in situ powder XRD, in situ IR, and modeling (density functional theory calculations, and canonical Monte Carlo simulations) studies provide insights into the nature of the switching mechanisms and enable attribution of pronounced differences in sorption properties to the changed pore chemistry.
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spelling pubmed-101764682023-05-13 One Atom Can Make All the Difference: Gas-Induced Phase Transformations in Bisimidazole-Linked Diamondoid Coordination Networks Koupepidou, Kyriaki Nikolayenko, Varvara I. Sensharma, Debobroto Bezrukov, Andrey A. Vandichel, Matthias Nikkhah, Sousa Javan Castell, Dominic C. Oyekan, Kolade A. Kumar, Naveen Subanbekova, Aizhamal Vandenberghe, William G. Tan, Kui Barbour, Leonard J. Zaworotko, Michael J. J Am Chem Soc [Image: see text] Coordination networks (CNs) that undergo gas-induced transformation from closed (nonporous) to open (porous) structures are of potential utility in gas storage applications, but their development is hindered by limited control over their switching mechanisms and pressures. In this work, we report two CNs, [Co(bimpy)(bdc)](n) (X-dia-4-Co) and [Co(bimbz)(bdc)](n) (X-dia-5-Co) (H(2)bdc = 1,4-benzendicarboxylic acid; bimpy = 2,5-bis(1H-imidazole-1-yl)pyridine; bimbz = 1,4-bis(1H-imidazole-1-yl)benzene), that both undergo transformation from closed to isostructural open phases involving at least a 27% increase in cell volume. Although X-dia-4-Co and X-dia-5-Co only differ from one another by one atom in their N-donor linkers (bimpy = pyridine, and bimbz = benzene), this results in different pore chemistry and switching mechanisms. Specifically, X-dia-4-Co exhibited a gradual phase transformation with a steady increase in the uptake when exposed to CO(2), whereas X-dia-5-Co exhibited a sharp step (type F-IV isotherm) at P/P(0)[Image: see text] 0.008 or P[Image: see text] 3 bar (195 or 298 K, respectively). Single-crystal X-ray diffraction, in situ powder XRD, in situ IR, and modeling (density functional theory calculations, and canonical Monte Carlo simulations) studies provide insights into the nature of the switching mechanisms and enable attribution of pronounced differences in sorption properties to the changed pore chemistry. American Chemical Society 2023-04-26 /pmc/articles/PMC10176468/ /pubmed/37099724 http://dx.doi.org/10.1021/jacs.3c01113 Text en © 2023 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 Koupepidou, Kyriaki
Nikolayenko, Varvara I.
Sensharma, Debobroto
Bezrukov, Andrey A.
Vandichel, Matthias
Nikkhah, Sousa Javan
Castell, Dominic C.
Oyekan, Kolade A.
Kumar, Naveen
Subanbekova, Aizhamal
Vandenberghe, William G.
Tan, Kui
Barbour, Leonard J.
Zaworotko, Michael J.
One Atom Can Make All the Difference: Gas-Induced Phase Transformations in Bisimidazole-Linked Diamondoid Coordination Networks
title One Atom Can Make All the Difference: Gas-Induced Phase Transformations in Bisimidazole-Linked Diamondoid Coordination Networks
title_full One Atom Can Make All the Difference: Gas-Induced Phase Transformations in Bisimidazole-Linked Diamondoid Coordination Networks
title_fullStr One Atom Can Make All the Difference: Gas-Induced Phase Transformations in Bisimidazole-Linked Diamondoid Coordination Networks
title_full_unstemmed One Atom Can Make All the Difference: Gas-Induced Phase Transformations in Bisimidazole-Linked Diamondoid Coordination Networks
title_short One Atom Can Make All the Difference: Gas-Induced Phase Transformations in Bisimidazole-Linked Diamondoid Coordination Networks
title_sort one atom can make all the difference: gas-induced phase transformations in bisimidazole-linked diamondoid coordination networks
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10176468/
https://www.ncbi.nlm.nih.gov/pubmed/37099724
http://dx.doi.org/10.1021/jacs.3c01113
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