The novel S = 1/2 thionitrosyl complexes Cr(NS)(CN)(5)(3-), Cr(NS)(dmso)(5)(2+), and Cr(NS)(nmf)(5)(2+) (dmso = dimethyl sulfoxide, nmf = N-methylformamide) have been prepared, and their optical and electron paramagnetic resonance (EPR) spectra were studied. The values of the isotropic and anisotropic hyperfine and superhyperfine coupling constants A((53)Cr), A((14)N), and A((13)C) and of g were determined from the EPR spectra at room temperature and at 66 K. The values of A(⊥) and A(iso) in the thionitrosyl complexes were slightly higher than in the analogous nitrosyl complexes. A common feature in the optical absorption spectra of the thionitrosyl complexes in solution at 298 K is an absorption band around 600 nm with a vibronic structure whereas such a band is located around 450 nm in the analogous nitrosyl complexes. Density functional theory (DFT) studies of the series of complexes Cr(N)(H(2)O)(5)(2+), Cr(NO)(H(2)O)(5)(2+), Cr(NS)(H(2)O)(5)(2+), and Cr(NSe)(H(2)O)(5)(2+) show that the unpaired electron resides in a metal-based d(xy) orbital and that the electronic structure in the equatorial plane is similar in all four complexes and similar to Cr(3+). The σ donating ability was found in the order N(3-) ≫ NO < NS ≈ NSe and the π accepting ability in the order NO > NS ≈ NSe. Time dependent DFT calculations gave in all four complexes a d(x(2)-y(2)) ← d(xy) transition energy around 17 500 cm(-1).
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http://dx.doi.org/10.1021/ic1009797 | DOI Listing |
Molecules
August 2024
Institute of Chemistry and Biochemistry, Freie Universität Berlin, Fabeckstr. 34/36, 14195 Berlin, Germany.
The very limited number of structurally known thionitrosyl complexes of technetium was increased by the synthesis of [Tc(NS)Cl(PPh)] () and [Tc(NS)Cl(PPh)(OPPh)] () and their reaction products with hydrotris(pyrazolyl)borates, {HB(pz)}. Similar reactions were conducted with [Tc(NO)Cl(PPh)(CHCN)] and related rhenium thionitrosyls. Remarkably, most such reactions result in a rapid cleavage of the boron-nitrogen bonds of the ligands and the formation of pyrazole complexes of the two group 7 metals.
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January 2020
Department of Chemistry, Faculty of Science, Tokyo University of Science, 1-3 Kagurazaka, Shinjuku-ku, Tokyo 162-8601, Japan.
Although transition-metal complexes that contain thiocarbonyl (CS) and selenocarbonyl (CSe) ligands have been well studied, only three neutral or cationic selenonitrosyl (NSe) complexes have been reported, while anionic NSe complexes remain elusive. Herein, we report the first examples of anionic NSe-ligated ruthenium complexes, which were obtained from the reaction of anionic ruthenium nitrido complexes, elemental selenium, and 4-(N,N-dimethylamino)pyridine (DMAP). The structures of one of these ruthenium NSe complexes, as well as of the corresponding thionitrosyl (NS) and nitrosyl (NO) complexes, were systematically examined by X-ray diffraction analyses and theoretical calculations.
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November 2015
Department of Chemistry, The Hong Kong University of Science and Technology, Clear Water Bay, Kowloon, Hong Kong, People's Republic of China.
Ruthenium thio- and seleno-nitrosyl complexes containing chelating sulfur and oxygen ligands have been synthesised and their de-chalcogenation reactions have been studied. The reaction of mer-[Ru(N)Cl3(AsPh3)2] with elemental sulfur and selenium in tetrahydrofuran at reflux afforded the chalcogenonitrosyl complexes mer-[Ru(NX)Cl3(AsPh3)2] [X = S (1), Se (2)]. Treatment of 1 with KN(R2PS)2 afforded trans-[Ru(NS)Cl{N(R2PS)2}2] [R = Ph (3), Pr(i) (4), Bu(t) (5)].
View Article and Find Full Text PDFChem Commun (Camb)
April 2013
Department of Chemistry, Indiana University, 800 E. Kirkwood Avenue, Bloomington, IN, USA.
Addition of elemental sulfur to the vanadium nitride [(nacnac)V≡N(OAr)] forms the first thionitrosyl complex of vanadium, [(nacnac)V(NS)(OAr)]. Single crystal X-Ray diffraction studies and DFT calculations reveal an almost linear thionitrosyl ligand resulting from an extended π-resonance across the VNS moiety.
View Article and Find Full Text PDFInorg Chem
October 2010
Department of Chemistry, University of Copenhagen, Universitetsparken 5, DK-2100 Copenhagen Ø, Denmark.
The novel S = 1/2 thionitrosyl complexes Cr(NS)(CN)(5)(3-), Cr(NS)(dmso)(5)(2+), and Cr(NS)(nmf)(5)(2+) (dmso = dimethyl sulfoxide, nmf = N-methylformamide) have been prepared, and their optical and electron paramagnetic resonance (EPR) spectra were studied. The values of the isotropic and anisotropic hyperfine and superhyperfine coupling constants A((53)Cr), A((14)N), and A((13)C) and of g were determined from the EPR spectra at room temperature and at 66 K. The values of A(⊥) and A(iso) in the thionitrosyl complexes were slightly higher than in the analogous nitrosyl complexes.
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