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Structural Diversity of Silver Fluorinated β-Diketonates: Effect of the Terminal Substituent and Solvent

In order to demonstrate the role of the fluorination and some solvents in the structural organization of the Ag(I) coordination polymers with β-diketonate ligands (R(1)C(O)C(α)HC(O)R(2))(−) we synthesized a series of the compounds containing tfac- (R(1) = CH(3), R(2) = CF(3)) and pfpac- (R(1) = CH(3...

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Autores principales: Vikulova, Evgeniia S., Sukhikh, Taisiya S., Gulyaev, Sergey A., Ilyin, Igor Yu., Morozova, Natalia B.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8839988/
https://www.ncbi.nlm.nih.gov/pubmed/35163942
http://dx.doi.org/10.3390/molecules27030677
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author Vikulova, Evgeniia S.
Sukhikh, Taisiya S.
Gulyaev, Sergey A.
Ilyin, Igor Yu.
Morozova, Natalia B.
author_facet Vikulova, Evgeniia S.
Sukhikh, Taisiya S.
Gulyaev, Sergey A.
Ilyin, Igor Yu.
Morozova, Natalia B.
author_sort Vikulova, Evgeniia S.
collection PubMed
description In order to demonstrate the role of the fluorination and some solvents in the structural organization of the Ag(I) coordination polymers with β-diketonate ligands (R(1)C(O)C(α)HC(O)R(2))(−) we synthesized a series of the compounds containing tfac- (R(1) = CH(3), R(2) = CF(3)) and pfpac- (R(1) = CH(3), R(2) = C(2)F(5)) anions. Solvent-free [Ag(L)](∞) (L = tfac 1, pfpac 2) compounds and the corresponding acetonitrile and toluene adducts have been characterized by elemental analysis and/or NMR, IR and single-crystal XRD. This series includes five new coordination polymers. Compound 1 is a 3D coordination framework based on Ag–O(chelate/bridge), Ag–C(α) bonds, and argentophilic interactions. An increase in the fluorinated group leads to a chain coordination polymer 2 of an unusual structural organization. These chains can be represented as a “DNA-type”, where two intertwined helices based on Ag–O(chelate) and Ag–C(α) bonds are connected through Ag–O(bridge) ones. Two structural types of chain coordination polymers, [Ag(tfac)(CH(3)CN)] and [Ag(2)(L)(2)(solvent)], have been revealed for the adducts. The latter structural type differs significantly from the previously studied toluene and acetonitrile adducts of fluorinated Ag(I) β-diketonates of the same stoichiometry. Thermal analysis in helium showed that both 1 and 2 decompose to metallic silver with the compound of pfpac-ligand being slightly more stable.
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spelling pubmed-88399882022-02-13 Structural Diversity of Silver Fluorinated β-Diketonates: Effect of the Terminal Substituent and Solvent Vikulova, Evgeniia S. Sukhikh, Taisiya S. Gulyaev, Sergey A. Ilyin, Igor Yu. Morozova, Natalia B. Molecules Article In order to demonstrate the role of the fluorination and some solvents in the structural organization of the Ag(I) coordination polymers with β-diketonate ligands (R(1)C(O)C(α)HC(O)R(2))(−) we synthesized a series of the compounds containing tfac- (R(1) = CH(3), R(2) = CF(3)) and pfpac- (R(1) = CH(3), R(2) = C(2)F(5)) anions. Solvent-free [Ag(L)](∞) (L = tfac 1, pfpac 2) compounds and the corresponding acetonitrile and toluene adducts have been characterized by elemental analysis and/or NMR, IR and single-crystal XRD. This series includes five new coordination polymers. Compound 1 is a 3D coordination framework based on Ag–O(chelate/bridge), Ag–C(α) bonds, and argentophilic interactions. An increase in the fluorinated group leads to a chain coordination polymer 2 of an unusual structural organization. These chains can be represented as a “DNA-type”, where two intertwined helices based on Ag–O(chelate) and Ag–C(α) bonds are connected through Ag–O(bridge) ones. Two structural types of chain coordination polymers, [Ag(tfac)(CH(3)CN)] and [Ag(2)(L)(2)(solvent)], have been revealed for the adducts. The latter structural type differs significantly from the previously studied toluene and acetonitrile adducts of fluorinated Ag(I) β-diketonates of the same stoichiometry. Thermal analysis in helium showed that both 1 and 2 decompose to metallic silver with the compound of pfpac-ligand being slightly more stable. MDPI 2022-01-20 /pmc/articles/PMC8839988/ /pubmed/35163942 http://dx.doi.org/10.3390/molecules27030677 Text en © 2022 by the authors. https://creativecommons.org/licenses/by/4.0/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 (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Vikulova, Evgeniia S.
Sukhikh, Taisiya S.
Gulyaev, Sergey A.
Ilyin, Igor Yu.
Morozova, Natalia B.
Structural Diversity of Silver Fluorinated β-Diketonates: Effect of the Terminal Substituent and Solvent
title Structural Diversity of Silver Fluorinated β-Diketonates: Effect of the Terminal Substituent and Solvent
title_full Structural Diversity of Silver Fluorinated β-Diketonates: Effect of the Terminal Substituent and Solvent
title_fullStr Structural Diversity of Silver Fluorinated β-Diketonates: Effect of the Terminal Substituent and Solvent
title_full_unstemmed Structural Diversity of Silver Fluorinated β-Diketonates: Effect of the Terminal Substituent and Solvent
title_short Structural Diversity of Silver Fluorinated β-Diketonates: Effect of the Terminal Substituent and Solvent
title_sort structural diversity of silver fluorinated β-diketonates: effect of the terminal substituent and solvent
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8839988/
https://www.ncbi.nlm.nih.gov/pubmed/35163942
http://dx.doi.org/10.3390/molecules27030677
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