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Tris(2-mercaptoimidazolyl)hydroborato Cadmium Thiolate Complexes, [Tm(Bu(t))]CdSAr: Thiolate Exchange at Cadmium in a Sulfur-Rich Coordination Environment

[Image: see text] A series of cadmium thiolate compounds that feature a sulfur-rich coordination environment, namely [Tm(Bu(t))]CdSAr, have been synthesized by the reactions of [Tm(Bu(t))]CdMe with ArSH (Ar = C(6)H(4)-4-F, C(6)H(4)-4-Bu(t), C(6)H(4)-4-OMe, and C(6)H(4)-3-OMe). In addition, the pyrid...

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Autores principales: Kreider-Mueller, Ava, Quinlivan, Patrick J., Owen, Jonathan S., Parkin, Gerard
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Chemical Society 2017
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5461919/
https://www.ncbi.nlm.nih.gov/pubmed/28368611
http://dx.doi.org/10.1021/acs.inorgchem.7b00296
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author Kreider-Mueller, Ava
Quinlivan, Patrick J.
Owen, Jonathan S.
Parkin, Gerard
author_facet Kreider-Mueller, Ava
Quinlivan, Patrick J.
Owen, Jonathan S.
Parkin, Gerard
author_sort Kreider-Mueller, Ava
collection PubMed
description [Image: see text] A series of cadmium thiolate compounds that feature a sulfur-rich coordination environment, namely [Tm(Bu(t))]CdSAr, have been synthesized by the reactions of [Tm(Bu(t))]CdMe with ArSH (Ar = C(6)H(4)-4-F, C(6)H(4)-4-Bu(t), C(6)H(4)-4-OMe, and C(6)H(4)-3-OMe). In addition, the pyridine-2-thiolate and pyridine-2-selenolate derivatives, [Tm(Bu(t))]CdSPy and [Tm(Bu(t))]CdSePy have been obtained via the respective reactions of [Tm(Bu(t))]CdMe with pyridine-2-thione and pyridine-2-selone. The molecular structures of [Tm(Bu(t))]CdSAr and [Tm(Bu(t))]CdEPy (E = S or Se) have been determined by X-ray diffraction and demonstrate that, in each case, the [CdS(4)] motif is distorted tetrahedral and approaches a trigonal monopyramidal geometry in which the thiolate ligand adopts an equatorial position; [Tm(Bu(t))]CdSPy and [Tm(Bu(t))]CdSePy, however, exhibit an additional long-range interaction with the pyridyl nitrogen atoms. The ability of the thiolate ligands to participate in exchange was probed by (1)H and (19)F nuclear magnetic resonance (NMR) spectroscopic studies of the reactions of [Tm(Bu(t))]CdSC(6)H(4)-4-F with ArSH (Ar = C(6)H(4)-4-Bu(t) or C(6)H(4)-4-OMe), which demonstrate that (i) exchange is facile and (ii) coordination of thiolate to cadmium is most favored for the p-fluorophenyl derivative. Furthermore, a two-dimensional EXSY experiment involving [Tm(Bu(t))]CdSC(6)H(4)-4-F and 4-fluorothiophenol demonstrates that degenerate thiolate ligand exchange is also facile on the NMR time scale.
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spelling pubmed-54619192018-04-03 Tris(2-mercaptoimidazolyl)hydroborato Cadmium Thiolate Complexes, [Tm(Bu(t))]CdSAr: Thiolate Exchange at Cadmium in a Sulfur-Rich Coordination Environment Kreider-Mueller, Ava Quinlivan, Patrick J. Owen, Jonathan S. Parkin, Gerard Inorg Chem [Image: see text] A series of cadmium thiolate compounds that feature a sulfur-rich coordination environment, namely [Tm(Bu(t))]CdSAr, have been synthesized by the reactions of [Tm(Bu(t))]CdMe with ArSH (Ar = C(6)H(4)-4-F, C(6)H(4)-4-Bu(t), C(6)H(4)-4-OMe, and C(6)H(4)-3-OMe). In addition, the pyridine-2-thiolate and pyridine-2-selenolate derivatives, [Tm(Bu(t))]CdSPy and [Tm(Bu(t))]CdSePy have been obtained via the respective reactions of [Tm(Bu(t))]CdMe with pyridine-2-thione and pyridine-2-selone. The molecular structures of [Tm(Bu(t))]CdSAr and [Tm(Bu(t))]CdEPy (E = S or Se) have been determined by X-ray diffraction and demonstrate that, in each case, the [CdS(4)] motif is distorted tetrahedral and approaches a trigonal monopyramidal geometry in which the thiolate ligand adopts an equatorial position; [Tm(Bu(t))]CdSPy and [Tm(Bu(t))]CdSePy, however, exhibit an additional long-range interaction with the pyridyl nitrogen atoms. The ability of the thiolate ligands to participate in exchange was probed by (1)H and (19)F nuclear magnetic resonance (NMR) spectroscopic studies of the reactions of [Tm(Bu(t))]CdSC(6)H(4)-4-F with ArSH (Ar = C(6)H(4)-4-Bu(t) or C(6)H(4)-4-OMe), which demonstrate that (i) exchange is facile and (ii) coordination of thiolate to cadmium is most favored for the p-fluorophenyl derivative. Furthermore, a two-dimensional EXSY experiment involving [Tm(Bu(t))]CdSC(6)H(4)-4-F and 4-fluorothiophenol demonstrates that degenerate thiolate ligand exchange is also facile on the NMR time scale. American Chemical Society 2017-04-03 2017-04-17 /pmc/articles/PMC5461919/ /pubmed/28368611 http://dx.doi.org/10.1021/acs.inorgchem.7b00296 Text en Copyright © 2017 American Chemical Society This is an open access article published under an ACS AuthorChoice License (http://pubs.acs.org/page/policy/authorchoice_termsofuse.html) , which permits copying and redistribution of the article or any adaptations for non-commercial purposes.
spellingShingle Kreider-Mueller, Ava
Quinlivan, Patrick J.
Owen, Jonathan S.
Parkin, Gerard
Tris(2-mercaptoimidazolyl)hydroborato Cadmium Thiolate Complexes, [Tm(Bu(t))]CdSAr: Thiolate Exchange at Cadmium in a Sulfur-Rich Coordination Environment
title Tris(2-mercaptoimidazolyl)hydroborato Cadmium Thiolate Complexes, [Tm(Bu(t))]CdSAr: Thiolate Exchange at Cadmium in a Sulfur-Rich Coordination Environment
title_full Tris(2-mercaptoimidazolyl)hydroborato Cadmium Thiolate Complexes, [Tm(Bu(t))]CdSAr: Thiolate Exchange at Cadmium in a Sulfur-Rich Coordination Environment
title_fullStr Tris(2-mercaptoimidazolyl)hydroborato Cadmium Thiolate Complexes, [Tm(Bu(t))]CdSAr: Thiolate Exchange at Cadmium in a Sulfur-Rich Coordination Environment
title_full_unstemmed Tris(2-mercaptoimidazolyl)hydroborato Cadmium Thiolate Complexes, [Tm(Bu(t))]CdSAr: Thiolate Exchange at Cadmium in a Sulfur-Rich Coordination Environment
title_short Tris(2-mercaptoimidazolyl)hydroborato Cadmium Thiolate Complexes, [Tm(Bu(t))]CdSAr: Thiolate Exchange at Cadmium in a Sulfur-Rich Coordination Environment
title_sort tris(2-mercaptoimidazolyl)hydroborato cadmium thiolate complexes, [tm(bu(t))]cdsar: thiolate exchange at cadmium in a sulfur-rich coordination environment
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5461919/
https://www.ncbi.nlm.nih.gov/pubmed/28368611
http://dx.doi.org/10.1021/acs.inorgchem.7b00296
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