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EXAFS Study on the Coordination Chemistry of the Solvated Copper(II) Ion in a Series of Oxygen Donor Solvents

[Image: see text] The structures of the solvated copper(II) ion in water and nine organic oxygen donor solvents with similar electron-pair donor ability, but with different space-demanding properties at coordination, have been studied by EXAFS. N,N′-Dimethylpropyleneurea and N,N,N′,N′-tetramethylure...

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Autores principales: Persson, Ingmar, Lundberg, Daniel, Bajnóczi, Éva G., Klementiev, Konstantin, Just, Justus, Sigfridsson Clauss, Kajsa G. V.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Chemical Society 2020
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7467664/
https://www.ncbi.nlm.nih.gov/pubmed/32614569
http://dx.doi.org/10.1021/acs.inorgchem.0c00403
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author Persson, Ingmar
Lundberg, Daniel
Bajnóczi, Éva G.
Klementiev, Konstantin
Just, Justus
Sigfridsson Clauss, Kajsa G. V.
author_facet Persson, Ingmar
Lundberg, Daniel
Bajnóczi, Éva G.
Klementiev, Konstantin
Just, Justus
Sigfridsson Clauss, Kajsa G. V.
author_sort Persson, Ingmar
collection PubMed
description [Image: see text] The structures of the solvated copper(II) ion in water and nine organic oxygen donor solvents with similar electron-pair donor ability, but with different space-demanding properties at coordination, have been studied by EXAFS. N,N′-Dimethylpropyleneurea and N,N,N′,N′-tetramethylurea are sufficiently space demanding at coordination to make the axial positions not accessible, resulting in square-planar copper(II) solvate complexes with an intense green color. The mean Cu–O bond distances in these two solvate complexes are 1.939(3) and 1.935(3) Å, respectively. The best fits of the remaining solvates, which are light blue in different hues, are obtained with a Jahn–Teller distorted-octahedral model consisting of four strongly bound solvent molecules in the equatorial positions at 1.96(2) Å and two in the axial positions but with different Cu–O(ax) bond distances: ca. 2.15 and 2.32 Å. This is in agreement with observations in solid-state structures of compounds containing hexaaquacopper(II) complexes crystallizing in noncentrosymmetric space groups and all reported crystal structures containing a [Cu(H(2)O)(5)(O-ligand)] complex with Jahn–Teller distortion. Such a structure is in agreement with previous EPR and EXAFS studies proving the hydrated copper(II) ion to be a noncentrosymmetric complex in aqueous solution. The refinements of the EXAFS data of the solids [Cu(H(2)O)(6)](ClO(4))(2), [Cu(H(2)O)(6)](BrO(3))(2), [Cu(H(2)O)(6)]SiF(6), Cu(NO(3))(2)·2.5H(2)O, and CuSO(4)·5H(2)O gave Cu–O bond distances significantly different from those reported in the crystallographic studies but similar to the configuration and bond distances in the hydrated copper(II) ion in aqueous solution. This may depend on whether the orientation of the axial positions is random in one or three dimensions, giving a mean structure of the solid with symmetry higher than that of the individual complexes. This study presents the very first experimental data from the new X-ray absorption spectroscopy beamline Balder at the MAX IV synchrotron radiation facility in Lund, Sweden, as well as the utilized properties of the beamline.
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spelling pubmed-74676642020-09-03 EXAFS Study on the Coordination Chemistry of the Solvated Copper(II) Ion in a Series of Oxygen Donor Solvents Persson, Ingmar Lundberg, Daniel Bajnóczi, Éva G. Klementiev, Konstantin Just, Justus Sigfridsson Clauss, Kajsa G. V. Inorg Chem [Image: see text] The structures of the solvated copper(II) ion in water and nine organic oxygen donor solvents with similar electron-pair donor ability, but with different space-demanding properties at coordination, have been studied by EXAFS. N,N′-Dimethylpropyleneurea and N,N,N′,N′-tetramethylurea are sufficiently space demanding at coordination to make the axial positions not accessible, resulting in square-planar copper(II) solvate complexes with an intense green color. The mean Cu–O bond distances in these two solvate complexes are 1.939(3) and 1.935(3) Å, respectively. The best fits of the remaining solvates, which are light blue in different hues, are obtained with a Jahn–Teller distorted-octahedral model consisting of four strongly bound solvent molecules in the equatorial positions at 1.96(2) Å and two in the axial positions but with different Cu–O(ax) bond distances: ca. 2.15 and 2.32 Å. This is in agreement with observations in solid-state structures of compounds containing hexaaquacopper(II) complexes crystallizing in noncentrosymmetric space groups and all reported crystal structures containing a [Cu(H(2)O)(5)(O-ligand)] complex with Jahn–Teller distortion. Such a structure is in agreement with previous EPR and EXAFS studies proving the hydrated copper(II) ion to be a noncentrosymmetric complex in aqueous solution. The refinements of the EXAFS data of the solids [Cu(H(2)O)(6)](ClO(4))(2), [Cu(H(2)O)(6)](BrO(3))(2), [Cu(H(2)O)(6)]SiF(6), Cu(NO(3))(2)·2.5H(2)O, and CuSO(4)·5H(2)O gave Cu–O bond distances significantly different from those reported in the crystallographic studies but similar to the configuration and bond distances in the hydrated copper(II) ion in aqueous solution. This may depend on whether the orientation of the axial positions is random in one or three dimensions, giving a mean structure of the solid with symmetry higher than that of the individual complexes. This study presents the very first experimental data from the new X-ray absorption spectroscopy beamline Balder at the MAX IV synchrotron radiation facility in Lund, Sweden, as well as the utilized properties of the beamline. American Chemical Society 2020-07-02 2020-07-20 /pmc/articles/PMC7467664/ /pubmed/32614569 http://dx.doi.org/10.1021/acs.inorgchem.0c00403 Text en Copyright © 2020 American Chemical Society This is an open access article published under a Creative Commons Attribution (CC-BY) License (http://pubs.acs.org/page/policy/authorchoice_ccby_termsofuse.html) , which permits unrestricted use, distribution and reproduction in any medium, provided the author and source are cited.
spellingShingle Persson, Ingmar
Lundberg, Daniel
Bajnóczi, Éva G.
Klementiev, Konstantin
Just, Justus
Sigfridsson Clauss, Kajsa G. V.
EXAFS Study on the Coordination Chemistry of the Solvated Copper(II) Ion in a Series of Oxygen Donor Solvents
title EXAFS Study on the Coordination Chemistry of the Solvated Copper(II) Ion in a Series of Oxygen Donor Solvents
title_full EXAFS Study on the Coordination Chemistry of the Solvated Copper(II) Ion in a Series of Oxygen Donor Solvents
title_fullStr EXAFS Study on the Coordination Chemistry of the Solvated Copper(II) Ion in a Series of Oxygen Donor Solvents
title_full_unstemmed EXAFS Study on the Coordination Chemistry of the Solvated Copper(II) Ion in a Series of Oxygen Donor Solvents
title_short EXAFS Study on the Coordination Chemistry of the Solvated Copper(II) Ion in a Series of Oxygen Donor Solvents
title_sort exafs study on the coordination chemistry of the solvated copper(ii) ion in a series of oxygen donor solvents
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7467664/
https://www.ncbi.nlm.nih.gov/pubmed/32614569
http://dx.doi.org/10.1021/acs.inorgchem.0c00403
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