Search results for "OCTA"

showing 10 items of 1862 documents

CCDC 1439196: Experimental Crystal Structure Determination

2016

Related Article: Toni Mäkelä, Miia-Elina Minkkinen, and Kari Rissanen|2016|Inorg.Chem.|55|1339|doi:10.1021/acs.inorgchem.5b02780

Ammonium bromo-(1819-bis((2-oxidobenzylidene)amino)-23568911121415-decahydro-147101316-benzohexaoxacyclooctadecine)-dioxo-uranium acetonitrile solvateSpace GroupCrystallographyCrystal SystemCrystal StructureCell ParametersExperimental 3D Coordinates
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A computational study of the lowest singlet and triplet states of neutral and dianionic 1,2-substituted icosahedral and octahedralo-carboranes

2006

This work introduces a calibrated B3LYP/6-31G(d) study on the electronic structure of singlet and triplet neutral species of 1,2-substituted icosahedral 1,2-R(2)-1,2-C(2)B(10)H(10) and octahedral 1,2-R(2)-1,2-C(2)B(4)H(4) molecules with R = {H, OH, SH, NH(2), PH(2), CH(3), SiH(3)} and their respective dianions formed by proton removal on each R group. A variety of small adiabatic singlet-triplet gaps DeltaE(ST) are obtained from these systems ranging from 2.93 eV (R = NH(2)) <or= DeltaE(ST) <or= 3.98 eV (R = SiH(3)) for the icosahedral neutrals and 1.56 eV (R = NH(2)) <or= DeltaE(ST) <or= 4.13 eV (R = SiH(3)) for the octahedral neutrals, these gaps being globally smaller for the dianionic s…

AnionsBoron CompoundsModels MolecularChemical PhenomenaProtonChemistry PhysicalChemistryIcosahedral symmetryMolecular ConformationGeneral ChemistryElectronic structureComputational MathematicsCrystallographyOctahedronComputational chemistryMoleculeComputer SimulationSinglet stateAlgorithmsJournal of Computational Chemistry
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"Identification of mixed bromidochloridotellurate anions in disordered crystal structures of (bdmim)2[TeX2Y4] (X, Y = Br, Cl; bdmim = 1-butyl-2,3-dim…

2013

Abstract The discrete mixed [TeBrxCl6−x]2− anions in their disordered crystal structures have been identified by using the phases prepared by the reaction of 1-butyl-2,3-dimethylimidazolium halogenides (bdmim)X with tellurium tetrahalogenides TeX4 (X = Cl, Br) as examples. Homoleptic (bdmim)2[TeX6] [X = Cl (1), Br (2)] and mixed (bdmim)2[TeBr2Cl4] (3), and (bdmim)2[TeBr4Cl2] (4) are formed depending on the choice of the reagents, and their crystal structures have been determined by single-crystal X-ray diffraction. The coordination environments of tellurium in all hexahalogenidotellurates are almost octahedral. Because of the crystallographic disorder, the mixed [TeBr2Cl4]2− and [TeBr4Cl2]2…

AnionsBromidesModels MolecularMagnetic Resonance SpectroscopyAb initiochemistry.chemical_elementCrystal structureCrystallography X-RaySpectrum Analysis RamanAnalytical Chemistrysymbols.namesakechemistry.chemical_compoundChloridesX-Ray DiffractionHomolepticInstrumentationta116SpectroscopyMolecular StructureChemistryImidazolesAtomic and Molecular Physics and OpticsCrystallographyOctahedronsymbolsTellurium tetrachlorideQuantum TheoryTelluriumRaman spectroscopyTelluriumPowder diffractionSpectrochimica Acta Part A: Molecular and Biomolecular Spectroscopy
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The Crucial Role of Polyatomic Anions in Molecular Architecture: Structural And Magnetic Versatility of Five Nickel(II) Complexes Derived from A N,N,…

2009

Five new nickel(II) complexes [Ni(2)L(2)(N(3))(2)(H(2)O)(2)] (1), [Ni(2)L(2)(NO(3))(2)] (2), [Ni(2)L(2)(O(2)CPh)(CH(3)OH)(2)]ClO(4).0.5CH(3)OH (3), [Ni(3)L(2)(O(2)CPh)(4)] (4), and [Ni(2)L(2)(NO(2))(2)](n) (5) have been synthesized by using a tridentate Schiff base ligand, HL (2-[(3-Methylamino-propylimino)-methyl]-phenol), and the polyatomic monoanions N(3)(-), NO(3)(-), PhCOO(-), or NO(2)(-). The complexes have been structurally and magnetically characterized. The structural analysis reveals that in all five complexes, the Ni(II) ions possess a distorted octahedral geometry. Complexes 1 and 2 are dinuclear with di-mu-1,1-azido and di-mu(2)-phenoxo bridges, respectively. Complex 3 is also …

AnionsSchiff baseMolecular StructureSpectrophotometry InfraredLigandStereochemistryPolyatomic ionchemistry.chemical_elementCrystallography X-RayLigandsIonInorganic ChemistryMagneticschemistry.chemical_compoundNickelCrystallographychemistryNickelOctahedral molecular geometryCarboxylatePhysical and Theoretical ChemistrySchiff BasesInorganic Chemistry
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Influence of the anions on the structure and magnetic properties of a series of bis(µ-diphexono)-bridged linear trinuclear copper(II) complexes: an e…

2011

The reaction of H(2)L (N,N'-dimethyl-N,N'-bis(2-hydroxy-3-methoxy-5-methylbenzyl)-ethylenediamine) with different copper salts, in methanol and using a H(2)L/Cu = 2 : 3 molar ratio, led to four new bis(μ-diphenoxo)-bridged Cu(3) complexes of general formula [{Cu(S)(μ-L)}(2)Cu(H(2)O)(2n)]X(2) (S = CH(3)OH, n = 1 and X = BF(4)(-) for (1) or ClO(4)(-) for (2); S = Br(3)(-) anion and n = 1 without any X species for (3); S = H(2)O, n = 0 and X = NO(3)(-) for (4)). The use in the same reaction conditions of 4,4'-bipyridine (4,4'-bipy) as connector led to the chain complex [{Cu(μ-4,4'-bipy)(0.5)(μ-L)}(2)Cu(H(2)O)(2n)](ClO(4))(2)·17H(2)O (5). The structure of the centrosymmetric trinuclear unit in …

AnionsSteric effectsChemistryInorganic chemistryMolecular Conformationchemistry.chemical_elementEthylenediamineModels TheoreticalCrystallography X-RayCopperMagnetic susceptibilityInorganic ChemistryMetalMagneticsCrystallographychemistry.chemical_compoundCoordination Complexesvisual_artOctahedral molecular geometryAtomvisual_art.visual_art_mediumAntiferromagnetismta116CopperDalton Transactions
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Structure of chloroantimonates(III) with an imidazolium cation: (C3H5N2)[SbCl4] and (C3H5N2)2[SbCl5]

2003

Abstract Two different chloroantimonates(III) with an imidazolium cation have been synthesized by the reaction of antimony trichloride and imidazole in an aqueous solution of hydrochloric acid. The crystals of (C3H5N2)[SbCl4] are monoclinic, space group C2/c, while (C3H5N2)2[SbCl5] crystallizes in the orthorhombic system, space group Pbcn. Both crystals are built of one dimensional zig-zag chains composed of [SbCl6]3− octahedra connected by edges and corners, respectively. The cavities between inorganic chains are filled by imidazolium cations. In both structures, one crystallographically independent imidazolium cation is rotationally disordered, and the positions of all atoms are split bet…

Antimony trichlorideHydrogen bondStereochemistryOrganic ChemistryIntermolecular forcedisorderAnalytical ChemistryInorganic ChemistryBond lengthCrystallographychemistry.chemical_compoundchloroantimonates(III)chemistryOctahedronoctahedral deformationhydrogen bondsImidazoleOrthorhombic crystal systemimidazolium cationSpectroscopyMonoclinic crystal systemJournal of Molecular Structure
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Crystal and Molecular Structure of 1,2,4-Triazolium Chloride and its Salt with Antimony Trichloride - Bis(1,2,4-triazolium) pentachloroantimonate(III…

2002

The structures of 1,2,4-triazolium chloride (C2H4N3)Cl and its derivative with antimony trichloride - (C2H4N3)2[SbCl5] · (C2H4N3)Cl containing unsubstituted 1,2,4-triazolium cations were determined. (C2H4N3)Cl crystallizes in the monoclinic system, space group P21/n with the unit cell dimensions at 86 K: a = 9.425(2), b = 8.557(2), c = 11.158(2)Å , β = 95.87(3)°; V = 895.2(3)Å3, Z=8, dc = 1.566, dm = 1.56(2) g·cm-3.At roomtemperature, crystals of (C2H4N3)2- [SbCl5] · (C2H4N3)Cl are orthorhombic, space group P212121, a = 8.318(2), b = 11.381(2), c = 19.931(4) Å, V = 1886.8(7) Å3, Z = 4, dc = 1.917, dm = 1.91(2) g·cm-3. In both crystals the 1,2,4-triazole rings are planar. The anionic sublatt…

Antimony trichlorideStereochemistryHydrogen bondGeneral ChemistryChlorideBond lengthCrystallographychemistry.chemical_compoundOctahedronchemistrymedicineMoleculeOrthorhombic crystal systemMonoclinic crystal systemmedicine.drugZeitschrift für Naturforschung B
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Synthesis and structure of tetrakis(tetramethylammonium) octacosachlorooctaantimonate(III) [(CH3)4N]4Sb8Cl28

2000

Abstract The reaction between antimony trichloride and tetramethylammonium chloride in nitromethane gives transparent, irregular crystals of tetrakis(tetramethylammonium) octacosachlorooctaantimonate(III) [(CH 3 ) 4 N] 4 Sb 8 Cl 28 . Crystals are triclinic, space group P-1, a =11.846(2), b =12.217(2), c=14.120(3) A , α =95.71(3), β =101.39(3), γ =118.59(3)°, V=1713.7(5) A 3 , Z =1, d c =2.193, d m =2.17(2) Mg m −3 . The structure contains a structurally novel Sb 8 Cl 28 4- anion. It is composed of eight deformed octahedra, connected with each other by faces. In cavities formed by inorganic sublattice are located two crystallographically nonequivalent tetramethylammonium cations. One of them…

Antimony trichlorideTetramethylammoniumNitromethaneStereochemistryOrganic ChemistrydisorderTriclinic crystal systemAnalytical ChemistryIonInorganic ChemistryCrystallographychemistry.chemical_compoundchloroantimonates(III)chemistryOctahedronGroup (periodic table)Tetramethylammonium chloridecrystal and molecular structureSpectroscopyJournal of Molecular Structure
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Volumes, heat capacities and solubilities of amyl compounds in decyltrimethylammonium bromide aqueous solutions

1989

Apparent molar heat capacities and volumes of amylamine (PentNH2) 0.02m, capronitrile (PentCN) 0.02m and nitropentane (PentNO2) 0.009m in decyltrimethylammonium bromide (DeTAB) micellar solutions, in water and in octane were measured at 25°C. By assuming that their concentration approaches the standard infinite dilution state, heat capacities and volumes were rationalized by means of previously reported equations following which the distribution constant between the aqueous and the micellar phase and heat capacity and volume of the additives in both phases are simultaneously derived. The present results are compared to those we have previously obtained for pentanol (PentOH). The thermodynam…

Aqueous solutionChemistryDistribution constantBiophysicsThermodynamicsBiochemistryHeat capacityDilutionchemistry.chemical_compoundMolar volumeMicellar solutionsOrganic chemistryPhysical and Theoretical ChemistrySolubilityMolecular BiologyOctaneJournal of Solution Chemistry
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Synthesis and characterization of acetazolamide complexes of Ni(II), Cd(II), Hg(II), and Ag(I)

1989

The preparation and characterization of K2Ni2(Acm)3·5H2O, Cd(Acm)·32 H2O, Hg(Acm)·12H2O, Ag2(Acm), and Ag2(Acm)(NH3) complexes are described. The spectral properties suggest that Acm interacts with the metal ions through the doubly deprotonated form as observed in the [Cu(Acm)(NH3)2(OH2)]2·2H2O complex, whose crystalline structure has been previously reported. The crystal field parameters of the Ni(II) complex indicate an octahedral environment for the metal ion in the solid and its aqueous, DMSO, and DMF solutions. UV spectra of all the Acm complexes until now synthesized are discussed.

Aqueous solutionChemistryMetal ions in aqueous solutionSpectral propertiesAnalytical chemistryCrystal structureBiochemistryInorganic ChemistryCrystalMetalCrystallographyDeprotonationOctahedronvisual_artvisual_art.visual_art_mediumJournal of Inorganic Biochemistry
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