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Weakening the Interchain Interactions in One Dimensional Cobalt(II) Coordination Polymers by Preventing Intermolecular Hydrogen Bonding

[Image: see text] The reaction of Co(NCS)(2) with N-methylaniline leads to the formation of [Co(NCS)(2)(N-methylaniline)(2)](n) (1), in which the cobalt(II) cations are octahedrally coordinated and linked into linear chains by pairs of thiocyanate anions. In contrast to [Co(NCS)(2)(aniline)(2)](n) (...

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Autores principales: Rams, Michał, Lohmiller, Thomas, Böhme, Michael, Jochim, Aleksej, Foltyn, Magdalena, Schnegg, Alexander, Plass, Winfried, Näther, Christian
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Chemical Society 2023
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10324318/
https://www.ncbi.nlm.nih.gov/pubmed/37319419
http://dx.doi.org/10.1021/acs.inorgchem.3c01324
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author Rams, Michał
Lohmiller, Thomas
Böhme, Michael
Jochim, Aleksej
Foltyn, Magdalena
Schnegg, Alexander
Plass, Winfried
Näther, Christian
author_facet Rams, Michał
Lohmiller, Thomas
Böhme, Michael
Jochim, Aleksej
Foltyn, Magdalena
Schnegg, Alexander
Plass, Winfried
Näther, Christian
author_sort Rams, Michał
collection PubMed
description [Image: see text] The reaction of Co(NCS)(2) with N-methylaniline leads to the formation of [Co(NCS)(2)(N-methylaniline)(2)](n) (1), in which the cobalt(II) cations are octahedrally coordinated and linked into linear chains by pairs of thiocyanate anions. In contrast to [Co(NCS)(2)(aniline)(2)](n) (2) reported recently, in which the Co(NCS)(2) chains are linked by strong interchain N–H···S hydrogen bonding, such interactions are absent in 1. Computational studies reveal that the cobalt(II) ions in compound 1 show an easy-axis anisotropy that is lower than in 2, but with the direction of the easy axis being similar in both compounds. The high magnetic anisotropy is also confirmed by magnetic and FD-FT THz-EPR spectroscopy, which yield a consistent g(z) value. These investigations prove that the intrachain interactions in 1 are slightly higher than in 2. Magnetic measurements reveal that the critical temperature for magnetic ordering in 1 is significantly lower than in 2, which indicates that the elimination of the hydrogen bonds leads to a weakening of the interchain interactions. This is finally proven by FD-FT THz-EPR experiments, which show that the interchain interaction energy in the N-methylaniline compound 1 is nine-fold smaller than in the aniline compound 2.
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spelling pubmed-103243182023-07-07 Weakening the Interchain Interactions in One Dimensional Cobalt(II) Coordination Polymers by Preventing Intermolecular Hydrogen Bonding Rams, Michał Lohmiller, Thomas Böhme, Michael Jochim, Aleksej Foltyn, Magdalena Schnegg, Alexander Plass, Winfried Näther, Christian Inorg Chem [Image: see text] The reaction of Co(NCS)(2) with N-methylaniline leads to the formation of [Co(NCS)(2)(N-methylaniline)(2)](n) (1), in which the cobalt(II) cations are octahedrally coordinated and linked into linear chains by pairs of thiocyanate anions. In contrast to [Co(NCS)(2)(aniline)(2)](n) (2) reported recently, in which the Co(NCS)(2) chains are linked by strong interchain N–H···S hydrogen bonding, such interactions are absent in 1. Computational studies reveal that the cobalt(II) ions in compound 1 show an easy-axis anisotropy that is lower than in 2, but with the direction of the easy axis being similar in both compounds. The high magnetic anisotropy is also confirmed by magnetic and FD-FT THz-EPR spectroscopy, which yield a consistent g(z) value. These investigations prove that the intrachain interactions in 1 are slightly higher than in 2. Magnetic measurements reveal that the critical temperature for magnetic ordering in 1 is significantly lower than in 2, which indicates that the elimination of the hydrogen bonds leads to a weakening of the interchain interactions. This is finally proven by FD-FT THz-EPR experiments, which show that the interchain interaction energy in the N-methylaniline compound 1 is nine-fold smaller than in the aniline compound 2. American Chemical Society 2023-06-15 /pmc/articles/PMC10324318/ /pubmed/37319419 http://dx.doi.org/10.1021/acs.inorgchem.3c01324 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 Rams, Michał
Lohmiller, Thomas
Böhme, Michael
Jochim, Aleksej
Foltyn, Magdalena
Schnegg, Alexander
Plass, Winfried
Näther, Christian
Weakening the Interchain Interactions in One Dimensional Cobalt(II) Coordination Polymers by Preventing Intermolecular Hydrogen Bonding
title Weakening the Interchain Interactions in One Dimensional Cobalt(II) Coordination Polymers by Preventing Intermolecular Hydrogen Bonding
title_full Weakening the Interchain Interactions in One Dimensional Cobalt(II) Coordination Polymers by Preventing Intermolecular Hydrogen Bonding
title_fullStr Weakening the Interchain Interactions in One Dimensional Cobalt(II) Coordination Polymers by Preventing Intermolecular Hydrogen Bonding
title_full_unstemmed Weakening the Interchain Interactions in One Dimensional Cobalt(II) Coordination Polymers by Preventing Intermolecular Hydrogen Bonding
title_short Weakening the Interchain Interactions in One Dimensional Cobalt(II) Coordination Polymers by Preventing Intermolecular Hydrogen Bonding
title_sort weakening the interchain interactions in one dimensional cobalt(ii) coordination polymers by preventing intermolecular hydrogen bonding
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10324318/
https://www.ncbi.nlm.nih.gov/pubmed/37319419
http://dx.doi.org/10.1021/acs.inorgchem.3c01324
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