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Mn(II), Fe(II), and Co(II) Aryloxides: Steric and Dispersion Effects and the Thermal Rearrangement of a Cobalt Aryloxide to a Co(II) Semiquinone Complex
[Image: see text] A series of Mn(II), Fe(II), and Co(II) bisaryloxide dimers ([M(OC(6)H(2)-2,4,6-Cy(3))(2)](2) {M = Mn (1), Fe (2), and Co (3)} were synthesized by the addition of 2,4,6-tricyclohexylphenol (HOC(6)H(2)-2,4,6-Cy(3)) to the silyl amido dimers [M(N(SiMe(3))(2))(2)](2) (M = Mn, Fe, Co; C...
Autores principales: | , , |
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Formato: | Online Artículo Texto |
Lenguaje: | English |
Publicado: |
American Chemical Society
2023
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Acceso en línea: | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10324311/ https://www.ncbi.nlm.nih.gov/pubmed/37343531 http://dx.doi.org/10.1021/acs.inorgchem.3c00610 |
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author | McLoughlin, Connor P. Fettinger, James C. Power, Philip P. |
author_facet | McLoughlin, Connor P. Fettinger, James C. Power, Philip P. |
author_sort | McLoughlin, Connor P. |
collection | PubMed |
description | [Image: see text] A series of Mn(II), Fe(II), and Co(II) bisaryloxide dimers ([M(OC(6)H(2)-2,4,6-Cy(3))(2)](2) {M = Mn (1), Fe (2), and Co (3)} were synthesized by the addition of 2,4,6-tricyclohexylphenol (HOC(6)H(2)-2,4,6-Cy(3)) to the silyl amido dimers [M(N(SiMe(3))(2))(2)](2) (M = Mn, Fe, Co; Cy = cyclohexyl). An unexpected and unique Co(II) phenoxide derivative (4), [Co(OC(6)H(2)-2,4,6-Cy(3))(O(2)C(6)H-3,5,6-Cy(3))](2), was obtained via ligand rearrangement of 3 at ca. 180 °C. This yielded 4 in which there are two unchanged, bridging phenoxide ligands as well as a terminal bidentate semiquinone ligand bound to each cobalt. Complexes 1 and 2 did not undergo such a rearrangement under the same conditions; both are thermally stable to temperatures exceeding 250 °C and feature numerous short-contact (<2.5 Å) H···H interactions consistent with the presence of dispersion stabilization. Use of the aryloxide ligand −OC(6)H(3)-2,6-Pr(i)(2) (Pr(i) = isopropyl), which is sterically similar to −OC(6)H(2)-2,4,6-Cy(3) but produces fewer close H···H interactions, gave the trimeric species [M(OC(6)H(3)-2,6-Pr(i)(2))(2)](3) {M = Fe (5) or Co (6)} which feature a linear array of three metal atoms bridged by aryloxides. The higher association number in 5 and 6 in comparison to that of 1–3 is due to the lower dispersion energy donor properties of the −OC(6)H(3)-2,6-Pr(i)(2) ligand and the lower stabilization it produces. |
format | Online Article Text |
id | pubmed-10324311 |
institution | National Center for Biotechnology Information |
language | English |
publishDate | 2023 |
publisher | American Chemical Society |
record_format | MEDLINE/PubMed |
spelling | pubmed-103243112023-07-07 Mn(II), Fe(II), and Co(II) Aryloxides: Steric and Dispersion Effects and the Thermal Rearrangement of a Cobalt Aryloxide to a Co(II) Semiquinone Complex McLoughlin, Connor P. Fettinger, James C. Power, Philip P. Inorg Chem [Image: see text] A series of Mn(II), Fe(II), and Co(II) bisaryloxide dimers ([M(OC(6)H(2)-2,4,6-Cy(3))(2)](2) {M = Mn (1), Fe (2), and Co (3)} were synthesized by the addition of 2,4,6-tricyclohexylphenol (HOC(6)H(2)-2,4,6-Cy(3)) to the silyl amido dimers [M(N(SiMe(3))(2))(2)](2) (M = Mn, Fe, Co; Cy = cyclohexyl). An unexpected and unique Co(II) phenoxide derivative (4), [Co(OC(6)H(2)-2,4,6-Cy(3))(O(2)C(6)H-3,5,6-Cy(3))](2), was obtained via ligand rearrangement of 3 at ca. 180 °C. This yielded 4 in which there are two unchanged, bridging phenoxide ligands as well as a terminal bidentate semiquinone ligand bound to each cobalt. Complexes 1 and 2 did not undergo such a rearrangement under the same conditions; both are thermally stable to temperatures exceeding 250 °C and feature numerous short-contact (<2.5 Å) H···H interactions consistent with the presence of dispersion stabilization. Use of the aryloxide ligand −OC(6)H(3)-2,6-Pr(i)(2) (Pr(i) = isopropyl), which is sterically similar to −OC(6)H(2)-2,4,6-Cy(3) but produces fewer close H···H interactions, gave the trimeric species [M(OC(6)H(3)-2,6-Pr(i)(2))(2)](3) {M = Fe (5) or Co (6)} which feature a linear array of three metal atoms bridged by aryloxides. The higher association number in 5 and 6 in comparison to that of 1–3 is due to the lower dispersion energy donor properties of the −OC(6)H(3)-2,6-Pr(i)(2) ligand and the lower stabilization it produces. American Chemical Society 2023-06-21 /pmc/articles/PMC10324311/ /pubmed/37343531 http://dx.doi.org/10.1021/acs.inorgchem.3c00610 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 | McLoughlin, Connor P. Fettinger, James C. Power, Philip P. Mn(II), Fe(II), and Co(II) Aryloxides: Steric and Dispersion Effects and the Thermal Rearrangement of a Cobalt Aryloxide to a Co(II) Semiquinone Complex |
title | Mn(II), Fe(II),
and Co(II) Aryloxides: Steric and
Dispersion Effects and the Thermal Rearrangement of a Cobalt Aryloxide
to a Co(II) Semiquinone Complex |
title_full | Mn(II), Fe(II),
and Co(II) Aryloxides: Steric and
Dispersion Effects and the Thermal Rearrangement of a Cobalt Aryloxide
to a Co(II) Semiquinone Complex |
title_fullStr | Mn(II), Fe(II),
and Co(II) Aryloxides: Steric and
Dispersion Effects and the Thermal Rearrangement of a Cobalt Aryloxide
to a Co(II) Semiquinone Complex |
title_full_unstemmed | Mn(II), Fe(II),
and Co(II) Aryloxides: Steric and
Dispersion Effects and the Thermal Rearrangement of a Cobalt Aryloxide
to a Co(II) Semiquinone Complex |
title_short | Mn(II), Fe(II),
and Co(II) Aryloxides: Steric and
Dispersion Effects and the Thermal Rearrangement of a Cobalt Aryloxide
to a Co(II) Semiquinone Complex |
title_sort | mn(ii), fe(ii),
and co(ii) aryloxides: steric and
dispersion effects and the thermal rearrangement of a cobalt aryloxide
to a co(ii) semiquinone complex |
url | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10324311/ https://www.ncbi.nlm.nih.gov/pubmed/37343531 http://dx.doi.org/10.1021/acs.inorgchem.3c00610 |
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