Search results for " Geometry"

showing 10 items of 2294 documents

Coordination abilities of l-glutamic acid γ-monohydroxamic acid towards copper(II) in the absence and presence of some aliphatic amines

2012

Abstract Solution equilibrium studies on the Cu 2+ –(A)–(Glu-γ-ha) ternary systems ((A) = polyamine: ethylenediamine (en), diethylenetriamine (dien), N , N , N ′, N ″, N ″-pentamethyldiethylenetriamine (Me 5 dien); (Glu-γ-ha) =  l -glutamic-γ-hydroxamic acid) have been performed by pH-potentiometry, UV–Vis spectrophotometry and EPR methods. The obtained results suggest the formation of the heteroligand complexes with [Cu(A)(Glu-γ-ha)] + stoichiometry in all studied systems. Our spectroscopic results indicate the tetragonal geometry for the [Cu(en)(Glu-γ-ha)] + species in which Glu-γ-ha acts as a tridentate ligand, the geometry slightly deviated from square pyramidal for [Cu(dien)(Glu-γ-ha)]…

Stereochemistrychemistry.chemical_elementEthylenediamineMedicinal chemistryCopperSquare pyramidal molecular geometrylaw.inventionInorganic Chemistrychemistry.chemical_compoundTrigonal bipyramidal molecular geometrychemistrylawDiethylenetriamineMaterials ChemistryPhysical and Theoretical ChemistryElectron paramagnetic resonanceTernary operationStoichiometryInorganica Chimica Acta
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Adducts of tin(IV) and organotin(IV) derivatives with 2,2′-azopyridine II. Crystal and molecular structure of SnMe2Br2AZP and further mössbauer and p…

1990

Abstract A series of adducts of tin(IV) derivatives with 2,2′-azopyridine, AZP, has been studied by Mossbauer and X-ray photoelectronic spectroscopies and the crystal and molecular structure of SnMe2Br2- AZP has been determined. The linear correlation of the Mossbauer parameter isomer shift with partial atomic charge on tin suggests the occurrence of a single homologous series of isostructural adducts. The correlation of the Mossbauer parameter quadrupole splitting and C-Sn-C bond angle permits their calculation in SnMe2X2AZP adducts (X = Cl, Br). The N1s binding energies, obtained by XPS data, pointed out two slightly different values for both pyridinic and azo-group nitrogens. The crystal…

Stereochemistrychemistry.chemical_elementQuadrupole splittingCrystal structureAdductInorganic ChemistryHomologous serieschemistry.chemical_compoundCrystallographyMolecular geometrychemistryMössbauer spectroscopyMaterials ChemistryPhysical and Theoretical ChemistryIsostructuralTinInorganica Chimica Acta
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Mössbauer study of the solid state configuration of triorganotin derivatives with intramolecular coordination

1980

Triorganotin bromides with intramolecular nitrogen-to-tin coordination (I-VIII, Fig. 1) have been structurally investigated by Mossbauer and infrared spectroscopy. Mossbauer-Zeeman spectra have been measured for I and VIII in order to obtain the sign of the nuclear quadrupole splitting ΔE and the value of the asymmetry parameter η. Point-charge model values of ΔE and η have been calculated for environments of tin atoms in I-VIII which are plausible in view of the results of previous investigations. From trends of experimental ΔE in the series, and from the agreement between experimental and calculated Mossbauer parameters it is concluded that the compounds I-VIII all have trigonal bipyramid…

Stereochemistrymedia_common.quotation_subjectInfrared spectroscopychemistry.chemical_elementQuadrupole splittingAsymmetrySpectral lineInorganic ChemistryTrigonal bipyramidal molecular geometryCrystallographychemistryIntramolecular forceMössbauer spectroscopyMaterials ChemistryPhysical and Theoretical ChemistryTinmedia_commonInorganica Chimica Acta
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Weak Interactions Modulating the Dimensionality in Supramolecular Architectures in Three New Nickel(II)-Hydrazone Complexes, Magnetostructural Correl…

2011

Three different ONO donor acetyl hydrazone Schiff bases have been synthesized from the condensation of acetic hydrazide with three different carbonyl compounds: salicylaldehyde (HL(1)), 2-hydroxyacetophenone (HL(2)), and 2, 3-dihydroxybenzaldehyde (HL(3)). These tridentate ligands are reacted with Ni(OOCCF(3))(2)·xH(2)O to yield three new Ni(II) complexes having distorted octahedral geometry at each Ni center: [Ni(L(1))(OOCCF(3))(CH(3)OH)](2) (1), [Ni(L(2))(OOCCF(3))(H(2)O)](2) (2), and [Ni(L(3))(L(3)H)](OOCCF(3))(H(2)O)(1.65)(CH(3)OH)(0.35) (3). The ligands and the complexes have been characterized by elemental analysis and IR and UV-vis spectroscopy, and the structures of the complexes ha…

Steric effectsModels MolecularStereochemistryMacromolecular SubstancesDimerSupramolecular chemistryHydrazoneAlkenes[CHIM.INOR]Chemical Sciences/Inorganic chemistry010402 general chemistryCrystallography X-RayLigands01 natural sciencesCatalysisPhase TransitionInorganic Chemistrychemistry.chemical_compoundMagneticsNickelOctahedral molecular geometryMagnetic propertiesOrganometallic Compounds[CHIM.CRIS]Chemical Sciences/Cristallography[CHIM]Chemical SciencesPhysical and Theoretical Chemistrychemistry.chemical_classificationMolecular StructureCatalysts010405 organic chemistryChemistryHydrogen bondLigandHydrazonesHydrocarbons0104 chemical sciencesCrystallographySalicylaldehydeOligomersEpoxy Compounds
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DNA interaction of new copper(II) complexes with sulfonamides as ligands

2007

New copper(II) complexes with sulfonamide ligands have been prepared and characterized. Sulfonamide ligands were prepared through a reaction between 8-aminoquinoline and either 2-mesitylene (Hqmesa), 4-tert-butylbenzene (Hqtbsa), or alpha-toluene (Halphaqtsa) sulfonyl chlorides. The structural analysis carried out for complex [Cu(alphaqtsa)(2)] indicated that the local environment of the Cu(II) cation is between a square planar and a tetrahedral geometry, with stacking of the benzene rings of the sulfonyl ligands between neighbor molecules. Powder EPR spectra at room temperature gave rhombic spectra for the [Cu(alphaqtsa)(2)] and [Cu(qmesa)(2)] complexes and an axial spectrum for the [Cu(qt…

Steric effectsMolecular Conformationchemistry.chemical_elementAscorbic AcidCrystallography X-RayPhotochemistryBiochemistryMedicinal chemistrylaw.inventionInorganic ChemistrylawOrganometallic CompoundsMoleculeSinglet stateElectron paramagnetic resonancechemistry.chemical_classificationSulfonylSulfonamidesMolecular StructureTetrahedral molecular geometryDNACopperIntercalating AgentsSulfonamidechemistryReactive Oxygen SpeciesCopperPlasmidsJournal of Inorganic Biochemistry
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Dispersion Forces and Counterintuitive Steric Effects in Main Group Molecules: Heavier Group 14 (Si-Pb) Dichalcogenolate Carbene Analogues with Sub-9…

2013

The synthesis and spectroscopic and structural characterization of an extensive series of acyclic, monomeric tetrylene dichalcogenolates of formula M(ChAr)2 (M = Si, Ge, Sn, Pb; Ch = O, S, or Se; Ar = bulky m-terphenyl ligand, including two new acyclic silylenes) are described. They were found to possess several unusual features-the most notable of which is their strong tendency to display acute interligand, Ch-M-Ch, bond angles that are often well below 90°. Furthermore, and contrary to normal steric expectations, the interligand angles were found to become narrower as the size of the ligand was increased. Experimental and structural data in conjunction with high-level DFT calculations, in…

Steric effectsMolecular StructureChemistryLigandStereochemistryGeneral ChemistryBiochemistryLondon dispersion forceCatalysischemistry.chemical_compoundCrystallographyColloid and Surface ChemistryMonomerMolecular geometryOrganometallic CompoundsChalcogensQuantum TheoryMoleculeDispersion (chemistry)MethaneCarbeneta116Journal of the American Chemical Society
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EPR spectroscopic characterization of persistent germyl-substituted Pb(III)- and Sn(III)-radicals.

2010

In this report we present the synthesis and the detailed electron paramagnetic resonance (EPR) spectroscopic characterization of novel trivalent lead- and tin-based radicals comprising sterically demanding germyl substituents. The investigated radicals are derived from the recently reported trihypersilyl-substituted tetryl radicals *PbHyp3 and *SnHyp3. The tetryl radicals *Pb(Ge(SiMe3)3)3 (8), *Pb(Ge(SiMe3)3)2Si(SiMe3)3 (9), *PbGe(SiMe3)3(Si(SiMe3)3)2 (10), and *Sn(Ge(SiMe3)3)3 (11) show substitution patterns derived from stepwise (9, 10) or complete (8, 11) substitution of hypersilyl groups (Hyp = Si(SiMe3)3) in *PbHyp3 and *SnHyp3 by homologous hypergermyl groups (Hge = Ge(SiMe3)3). They …

Steric effectsNucleophilic additionChemistryStereochemistryRadicalSubstituentlaw.inventionInorganic ChemistryCrystallographychemistry.chemical_compoundMolecular geometrylawMolecular orbitalElectron paramagnetic resonanceHyperfine structureDalton transactions (Cambridge, England : 2003)
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Synthesis, spectroscopic characterization and in vitro antimicrobial activity of diorganotin(IV) dichloride adducts with [1,2,4]triazolo-[1,5-a]pyrim…

2006

Abstract The heterocyclic ligands [1,2,4]triazolo-[1,5-a]pyrimidine (tp) and 5,7-dimethyl-[1,2,4]triazolo-[1,5-a]pyrimidine (dmtp), react with diorganotin dichlorides giving the addition compounds Me2SnCl2(tp)2, Et2SnCl2(tp)2, Me2SnCl2(dmtp)2, Et2SnCl2(dmtp)2, Bu2SnCl2(dmtp), Ph2SnCl2(dmtp). The organotin:ligand stoichiometry goes from 1:2 to 1:1 by increasing the steric hindrance of the organic groups bound to tin. The compounds have been characterized by means of infrared, 119Sn Mossbauer and 1H AND 13C NMR spectroscopy. The ligands presumably coordinate to tin classically through the nitrogen atom at the position 3. The 1:1 complexes adopt trigonal bipyramidal structures, with the organi…

Steric effectsPyrimidineLigandStereochemistryOrganic ChemistryDFT calculationchemistry.chemical_elementAntimicrobial activityBiochemistryMedicinal chemistryTriazolopyrimidine; Diorganotin(IV); Mossbauer; DFT calculations; Antimicrobial activityAdductMossbauerInorganic ChemistryTrigonal bipyramidal molecular geometrychemistry.chemical_compoundchemistryOctahedronMössbauer spectroscopyMaterials ChemistryTriazolopyrimidinePhysical and Theoretical ChemistryTinDiorganotin(IV)Journal of Organometallic Chemistry
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Tin( II ) and Lead( II ) 4‐Acyl‐5‐pyrazolonates: Synthesis, Spectroscopic and X‐ray Structural Characterization

2004

Novel tin(II) β-diketonate Sn(Q)2 complexes [HQ = 1-R1-3-R3-4-R4(C=O)-pyrazol-5-one; HQC: R1 = Ph, R3 = Me, R4 = Cy; HQS: R1 = Ph, R3 = Me, R4 = CHPh2; HQL: R1 = Ph, R3 = Me, R4 = CH2Ph; HQT: R1 = Ph, R3 = Me, R4 = CH2tBu; HQE: R1 = Ph, R3 = Me, R4 = Et; HQB: R1 = Ph, R3 = Me, R4 = tBu; HQW: R1 = Ph, R3 = Me, R4 = p-(tBu)Ph; HQR: R1 = Ph, R3 = Me, R4 = p-[(CH2)5CH3]Ph; HQN: R1 = p-NO2Ph, R3 = Me, R4 = Ph; HQM: R1 = Me, R3 = Me, R4 = Ph; HQD: R1 = Me, R3 = Me, R4 = Me; HQP: R1 = Ph, R3 = Ph, R4 = Ph; HQG: R1 = Ph, R3 = Ph, R4 = Me; HQF: R1 = p-CF3Ph, R3 = Me, R4 = Ph; HQH: R1 = p-CF3Ph, R3 = Me, R4 = Me] have been isolated and characterized by single-crystal X-ray diffraction analyses, IR, 1…

Steric effectsStereochemistryChemistryCoordination numberCrystal structureNuclear magnetic resonance spectroscopyInorganic ChemistryMetalCrystallographyMolecular geometryCovalent radiusvisual_artvisual_art.visual_art_mediumReactivity (chemistry)European Journal of Inorganic Chemistry
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Synthesis and chemico-physical characterization of tin(IV) complexes with some crown ethers

1986

Abstract Some neutral adducts of diorganotin(IV) perchlorates and thiocyanates with three crown-ethers have been synthesised; they are of the type Me 2 SnX 2 L m · n H 2 O where m = 1 or 2, n = 2 or 4, X = ClO 4 or NCS, and L = 18-crown-6, 15-crown-5, and 12-crown-4. The values for m and n have been correlated with the coordinating ability of the two anions and with the steric hindrance by the crown ether molecules. From infrared and Mossbauer data, an octahedral coordination geometry is proposed for all the complexes. The Mossbauer parameters are discussed in terms of the electronegativity of the ligands on the tin(IV) center and of the distortions produced in the coordination polyhedra by…

Steric effectschemistry.chemical_classificationOrganic Chemistry18-Crown-6Inorganic chemistrychemistry.chemical_elementBiochemistryAdductInorganic ChemistryCrystallographychemistry.chemical_compoundchemistry15-Crown-5Materials ChemistryPhysical and Theoretical ChemistryTinHydrateCrown etherCoordination geometryJournal of Organometallic Chemistry
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