The divalent iron complexes [FeBr(BINC)], [Cp*FeCl(BINC)] (Cp* = MeC), and [FeBr(CNArNC)] with the chelating bis(isonitrile) ligands BINC (bis(2-isocyanophenyl)phenylphosphonate) and CNArNC (2,2″-diisocyano-3,5,3″,5"tetramethyl-1,1':3',1″-terphenyl) have been prepared and characterized. Their subsequent reduction yields the di- and trinuclear compounds [Fe(BINC)], [Cp*Fe(BINC)], [Fe(CNArNC)], and [K(EtO)][Fe(CNArNC)]. The molecular structures of all new species were determined by X-ray crystallography and compared to those of related iron carbonyl complexes, demonstrating that the bidentate isonitrile ligands are capable surrogates for two CO ligands with only minimal distortion of the tetrahedral or octahedral geometry of the parent complexes. The complexes were further characterized by NMR and IR spectroscopy, and the electrochemical properties of selected compounds were analyzed by UV-vis-NIR spectroelectrochemistry.
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http://dx.doi.org/10.1021/acs.organomet.1c00042 | DOI Listing |
Inorg Chem
September 2023
Khlopin Radium Institute, 2-i Murinskii pr. 28, St. Petersburg 194021, Russia.
Technetium(I) 2 + 1 tricarbonyl complexes with a combination of ,-bidentate ligands (2,2'-bipyridine, bipy; 1,10-phenanthroline, phen) and ethyl isocyanoacetate were prepared and characterized by NMR, IR, UV/visible, and luminescence spectroscopies and by high-performance liquid chromatography (HPLC). The crystal structures of [Tc(CO)(bipy)(CNCHCOOEt)](ClO) (in the form of a solvate with 0.5CHCl) and [Tc(CO)(phen)(CNCHCOOEt)](ClO) (in the form of an adduct with an outer-sphere phen molecule) were determined by single-crystal X-ray diffraction.
View Article and Find Full Text PDFDalton Trans
September 2021
Institut für Anorganische und Analytische Chemie, Technische Universität Braunschweig, Hagenring 30, 38106 Braunschweig, Germany.
This paper describes the synthesis and reactivity of [η-1,3-(MeSi)CH]U(P-2,4,6-PrCH)(OPMe) (6) which is accessible from a ligand exchange reaction between [η-1,3-(MeSi)CH]U(P-2,4,6-PrCH)(OPPh) (2) and MePO at ambient temperature. Phosphinidene 6 exhibits no reactivity towards internal alkynes, but readily reacts with various hetero-unsaturated molecules such as isothiocyanates, aldehydes, nitriles, isonitriles, and organic azides, forming uranium sulfido, oxido, imido, and uranaheterocyclic compounds. Nevertheless, with the bidentate -dicyanobenzene -CH(CN) the zwitterionic species [η-1,3-(MeSi)CH]U[NHC(N){CHCP(2,4,6-PrCH)CHPMeO}] (13) is isolated in good yield.
View Article and Find Full Text PDFOrganometallics
April 2021
Institute of Organic Chemistry, University of Regensburg, 93040 Regensburg, Germany.
The divalent iron complexes [FeBr(BINC)], [Cp*FeCl(BINC)] (Cp* = MeC), and [FeBr(CNArNC)] with the chelating bis(isonitrile) ligands BINC (bis(2-isocyanophenyl)phenylphosphonate) and CNArNC (2,2″-diisocyano-3,5,3″,5"tetramethyl-1,1':3',1″-terphenyl) have been prepared and characterized. Their subsequent reduction yields the di- and trinuclear compounds [Fe(BINC)], [Cp*Fe(BINC)], [Fe(CNArNC)], and [K(EtO)][Fe(CNArNC)]. The molecular structures of all new species were determined by X-ray crystallography and compared to those of related iron carbonyl complexes, demonstrating that the bidentate isonitrile ligands are capable surrogates for two CO ligands with only minimal distortion of the tetrahedral or octahedral geometry of the parent complexes.
View Article and Find Full Text PDFRapid Commun Mass Spectrom
August 2018
IRPCDS, Corso Stati Uniti 4, 35127, Padova, Italy.
Rationale: fac-[Re(CO) (PO)(X)]-type complexes (PO = chelated bidentate tertiary phosphine (1-), X = various neutral, mono-dentate ligands) represent a class of compounds that meets the synthetic criteria for the preparation of potential carbon monoxide (CO) release molecules (CORMs) for medicinal application. The aim of our investigation was to achieve qualitative information whether the nature of the ancillary X ligand might influence the release of CO.
Methods: The release of CO has been investigated by means of product ion spectrometry of electrospray ionization (ESI)-generated [M + H] species, produced by multiple collisional experiments, using an ion trap mass spectrometer.
Org Biomol Chem
February 2011
Institute of Inorganic Chemistry, University of Zürich, Winterthurerstr. 190, 8057, Zürich, Switzerland.
The development of molecular imaging agents with multiple functions has become a major trend in radiopharmaceutical chemistry. We present herein the syntheses of trifunctional compounds, combining an acridine orange (AO) based intercalator with a GRP receptor specific bombesin like peptide (BBN). Metal-mediated conjugation of these two functions via the [2 + 1] approach to the third function, the [M(CO)(3)](+) (M = (99m)Tc, Re) moiety, yielded the final trifunctional molecules.
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