Search results for " 119Sn NMR"

showing 4 items of 4 documents

Structure ofD-ribonic acid-dimethyltin(IV) in coordinating solvents: an experimental and DFT119Sn NMR study

2006

We have investigated a newly synthesized complex of D-ribonic acid with dimethyltin(IV). The structure of the complex in solution has been characterized by means of 1 H, 13 C, and 119 Sn NMR and by DFT calculations. The comparison of experimental and computational results allowed the determination of the stable conformation in solution as well as the detection of a dimerization process. Moreover, evidence is given of active coordination of the metal by the solvent.

organotin compounds; ribonic acid; carbohydrate-metal complexes; 119Sn NMR; DFT calculationsChemistryOrganic Chemistrycarbohydratestin compoundstin-119carbohydrates; tin compounds; tin-119; NMR spectroscopy; computational chemistrycomputational chemistryMetalSolventNMR spectroscopyComputational chemistryvisual_art119Sn NMR Carbohydrate-metal complexes DFT calculations Organotin compounds Ribonic acidvisual_art.visual_art_mediumOrganic chemistryPhysical and Theoretical ChemistryJournal of Physical Organic Chemistry
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Preparation and structural studies on diorganotin(IV) complexes of N-nitroso-N-phenylhydroxylaminates

2007

Abstract Diorganotin(IV)-complexes of the N -nitroso- N -phenylhydroxylaminates (hereinafter cupf), Et 2 Sn(cupf) 2 ( 1 ), Bu 2 Sn(cupf) 2 ( 2 ), {[Bu 2 Sn(cupf)] 2 O} 2 ( 3 ), t -Bu 2 Sn(cupf) 2 ( 4 ) and Oc 2 Sn(cupf) 2 ( 5 , 6 ) were prepared and characterised by FT-IR and Mossbauer spectroscopic measurements. The binding modes of the ligand were identified by FT-IR spectroscopy, and it was found that the ligand is coordinated in chelating or bridging mode to the organotin(IV) center. The 119 Sn Mossbauer and FT-IR studies support the formation of trans -O h ( 1 – 6 ) structures. The X-ray diffraction analysis of 4 revealed that the tin centre is in a skew-trapezoidal geometry defined by…

CupferronChemistryLigand1HOrganic Chemistrychemistry.chemical_elementNitrosoBiochemistryX-ray diffractionFT-IRMossbauerInorganic ChemistryCrystallographychemistry.chemical_compound13C and 119Sn NMR spectroscopyMössbauer spectroscopyX-ray crystallographyMaterials ChemistryCupferronChelationPhysical and Theoretical ChemistryTinSpectroscopyDiorganotin(IV)Journal of Organometallic Chemistry
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Equilibrium, Structural and Biological Activity Studies on [Organotin(IV)]n+ Complexes

2008

Organotin(IV) compounds are characterized by the presence of at least one covalent C–Sn bond. The compounds contain tetravalent {Sn} centers and are classified as mono-, di-, tri-, and tetraorganotin(IV), depending on the number of alkyl (R) or aryl (Ar) moieties bound. The anions are usually Cl, F, O2, OH,–COO, or –S. It seems that the nature of the anionic group has only secondary importance in biological activity. The rapid rise in the industrial (catalyst in PVC and foam production), agricultural (fungicides and acaricides), and biological applications (wood, stone, and glass preservatives) of organotin(IV) compounds during the last few decades has led to their accumulation in the envir…

Extended X-ray absorption fine structureSettore CHIM/03 - Chimica Generale E InorganicaChemistryComputational chemistryOrganic chemistryBiological activityOrganotin(IV) Compounds 119Sn NMR 119Sn Mossbauer spectroscopy EXAFSXANES X-ray Biological investigationsXANES
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A DFT study of the vicinal 3J(119Sn,13C) and 3J(119Sn,1H) coupling constants in trimethyl- and chlorodimethyl-stannyl propanoates.

2013

Abstract We have tested the performance of DFT protocols, both at the Scalar relativistic ZORA and non-relativistic level of theory, for the calculation of the 3 J( 119 Sn, 13 C) and 3 J( 119 Sn, 1 H) vicinal couplings for a series of flexible organotin(IV) derivatives with formula XMe2SnCHRCHR′COOMe (X = Me, Cl; R, R′ = Me, Ph). A satisfactory agreement between experimental and calculated vicinal couplings has been obtained by taking into account the conformational behaviour of the compounds investigated. The protocols used, mainly the relativistic one, were found to give a correct picture of the populations and a sufficiently high overall performance in calculating the vicinal couplings, …

Coupling constantheteronuclear NMR spectroscopySeries (mathematics)ChemistryOrganoTin(IV) 119Sn NMR 119Sn couplings Karplus DFT Relativistic ZORAOrganic ChemistryScalar (mathematics)heteronuclear NMR spectroscopy; DFT calculations; tin compoundstin compoundsDFT calculationsBiochemistryInorganic ChemistryComputational chemistrySettore CHIM/03 - Chimica Generale E InorganicaMaterials ChemistryOverall performancePhysical and Theoretical ChemistryVicinal
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