Search results for "crystal structure"

showing 10 items of 15036 documents

Preparation and crystal structure of the oxalato-bridged CrIII–AgItwo-dimensional compound {Ag3(H2O)[Cr(dpa)(ox)2]3}n·2nH2O (dpa = 2,2′-dipyridylamin…

2004

The reaction of the mononuclear complex [Cr(dpa)(ox)2]− (dpa = 2,2-dipyridylamine) with Ag+ in aqueous solution affords the two-dimensional compound {Ag3(H2O)[Cr(dpa)(ox)2]3}n·2nH2O (1) whose structure has been determined by single-crystal X-ray diffraction. Six crystallographically independent metal atoms (three chromium and three silver atoms) occur in 1. The three [Cr(dpa)(ox)2]− units in 1 act as ligands towards the silver atoms through the two oxalate groups. Each oxalate group acts as bridging ligand adopting five coordination modes: bis-bidentate, bis-bidentate/monodentate (outer), bis-bidentate/monodentate (inner), bidentate/bis-monodentate (outer) and bidentate/monodentate (outer).…

DenticityAqueous solutionInorganic chemistrychemistry.chemical_elementBridging ligandGeneral ChemistryCrystal structureCondensed Matter PhysicsBlock (periodic table)OxalateMetalCrystallographychemistry.chemical_compoundChromiumchemistryvisual_artvisual_art.visual_art_mediumGeneral Materials ScienceCrystEngComm
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Crystal structures, infrared-spectra, and thermal behavior of calcium hydrogenselenite monohydrate, Ca(HSeO3)2 · H2O, and dicalcium diselenite bis(hy…

1986

Abstract Calcium hydrogenselenite monohydrate and dicalcium diselenite bis(hydrogenselenite) were synthesized and their crystal structures determined. Crystal data for Ca(HSeO3)2 · H2O: a = 6.911(2), b = 7.369(2), c = 6.739(2) A, α = 90.51(3)°, β = 90.93(3)°, γ = 107.46(2)°, V = 327.3(2) A3, space group P 1 (No. 2), dcalcd = 3.19 M gm−3, Z = 2, and R = 0.036 for 1503 reflections. Data for Ca2(HSeO3)2(Se2O5): a = 14.719(4), b = 7.059(2), c = 11.793(2) A, β = 117.96(2)°, V = 1082.3(4) A3, space group C2 c (No. 15), dcalcd = 3.52 Mg m−3, Z = 4, and R = 0.047 for 1251 reflections. Both structures form a three-dimensional network. The coordination polyhedron around calcium is a monocapped trigon…

chemistry.chemical_classificationInfraredInfrared spectroscopychemistry.chemical_elementCrystal structureCalciumCondensed Matter PhysicsElectronic Optical and Magnetic MaterialsInorganic ChemistryCrystallographyTrigonal prismchemistryCrystal dataX-ray crystallographyMaterials ChemistryCeramics and CompositesPhysical and Theoretical ChemistryInorganic compoundJournal of Solid State Chemistry
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Outer and inner coordination sphere chemistry of polyazacyclophane platinum(II) complexes. Crystal structure of [PtBr4]2(H4L1) · H2O (L1 = 2,6,9,13-t…

1997

Abstract The interaction of PtCl42− with the new azaparacyclophane 2,5,8,11-tetraaza[12]paracyclophane (L2) has been studied by 1H, 13C and 195Pt NMR spectroscopy. Three different complexes are detected as a function of pH, all of them presenting cis-arrangement of nitrogen donors and chloride anions. In the first one, formed at acidic pH, the central nitrogen atoms of the macrocyclic are coordinating to Pt(II) while the benzylic nitrogens remain protonated. Deprotonation of these nitrogens brings about a reorganisation of the complex, and the platinum is then coordinated by one benzylic nitrogen and the consecutive nitrogen in the macrocycle. This process can be monitored by NMR. Finally, …

Coordination sphereHydrogen bondStereochemistryEthylenediamineProtonationNuclear magnetic resonance spectroscopyCrystal structureInorganic Chemistrychemistry.chemical_compoundCrystallographyDeprotonationchemistryMaterials ChemistryMoleculePhysical and Theoretical ChemistryInorganica Chimica Acta
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New Regularization Method for EXAFS Analysis

2007

As an alternative to the analysis of EXAFS spectra by conventional shell fitting, the Tikhonov regularization method has been proposed. An improved algorithm that utilizes a priori information about the sample has been developed and applied to the analysis of U L3‐edge spectra of soddyite, (UO2)2SiO4⋅2H2O, and of U(VI) sorbed onto kaolinite. The partial radial distribution functions g1(UU), g2(USi), and g3(UO) of soddyite agree with crystallographic values and previous EXAFS results.

Tikhonov regularizationX-ray spectroscopyExtended X-ray absorption fine structureAbsorption spectroscopyChemistryRegularization (physics)Analytical chemistryCrystal structureSpectroscopySpectral lineAIP Conference Proceedings
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Unexpected magnetic topology in the heterobimetallic [ReIVBr4(μ-ox)CuII(bpy)2] compound

2011

Abstract A novel oxalato-bridged rhenium(IV)-copper(II) compound, namely [ReIVBr4(μ-ox)CuII(bpy)2] (1), has been obtained by reacting (PPh4)2[ReBr4(ox)] with Cu(CF3SO3)2 and 2,2′-bpy in CH3CN, and its crystal structure determined by single-crystal X-ray diffraction. Intermolecular Br⋯Br interactions and nonbonding Cu⋯Br type contacts between the heterobimetallic dinuclear units lead to a two-dimensional supramolecular structure. Compound 1 behaves magnetically as a [ReIVCuII]2 tetranuclear species with weak antiferromagnetic interactions through the oxalato bridge and intermolecular Br⋯Br contacts.

Inorganic ChemistryCrystallographychemistryStereochemistryIntermolecular forceMaterials ChemistrySupramolecular chemistryAntiferromagnetismchemistry.chemical_elementCrystal structurePhysical and Theoretical ChemistryRheniumTopology (chemistry)Inorganica Chimica Acta
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Magnetic coupling and spin topology in linear oxalato-bridged tetranuclear chromium(III)–copper(II) complexes with aromatic diimine ligands

2013

Abstract A novel heterotetranuclear chromium(III)–copper(II) complex of formula {[CrIII(bpy)(ox)2]2CuII2(bpy)2(ox)}·6H2O (1) has been synthesized by the ligand exchange reaction between Ph4P[CrIII(bpy)(ox)2]·H2O and [CuII(bpy)2(NO3)]NO3·MeOH in methanol (bpy = 2,2′-bipyridine; ox2− = oxalate dianion). The X-ray crystal structure of 1 consists of neutral oxalato-bridged CrIII2Cu2II zigzag entities which are formed by the monodentate coordination of two [CrIII(bpy)(ox)2]− mononuclear anionic units through one of its two oxalato groups toward a [CuII2(bpy)2(ox)]2+ dinuclear cationic moiety featuring relatively long axial bonds at the square pyramidal CuII ions. Variable temperature (2.0–300 K)…

Inorganic ChemistryMagnetizationDenticitySpin statesChemistryLigandMaterials ChemistryCrystal structurePhysical and Theoretical ChemistryTopologyMagnetic susceptibilitySquare pyramidal molecular geometryDiiminePolyhedron
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Characterization of Crystalline Structure and Morphology of Ga<sub>2</sub>O<sub>3</sub> Thin Film Grown by MOCVD Technique

2016

Growth of gallium oxide thin film was realized with MOCVD on (0001) sapphire substrate. Structural and compositional properties of thin film were studied employing trimethylgallium and water as precursors, carrier gases were H2 and N2. Obtained film is polycrystalline and predominantly consisted of (201) oriented β-Ga2O3. Sample exhibited blue luminescence which is attributed to oxygen vacancies. H2 gas proved to have beneficial effect on film quality and overall growth process.

Materials scienceMorphology (linguistics)Mechanical EngineeringAnalytical chemistrychemistry.chemical_element02 engineering and technologyCrystal structure010402 general chemistry021001 nanoscience & nanotechnology01 natural sciencesOxygen0104 chemical scienceschemistry.chemical_compoundchemistryMechanics of MaterialsGeneral Materials ScienceCrystalliteMetalorganic vapour phase epitaxyTrimethylgalliumThin film0210 nano-technologyLuminescenceKey Engineering Materials
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Crystal structure of bis(cyclohexylammonium) diphenyldioxalatostannate(IV)

2015

In the title salt, (CyNH3)2[Sn(Ph2)(C2O4)2] (Cy is cyclo­hexyl and Ph is phen­yl), the SnPh2 moiety is chelated by two oxalate anions, leading to a cis arrangement within the distorted octa­hedral coordination sphere of the SnIV atom.

crystal structureStereochemistryOxalic acidcyclo­hexyl­ammoniumorganotin(IV) compoundSalt (chemistry)Crystal structureMedicinal chemistryOxalateResearch CommunicationsCrystalchemistry.chemical_compoundMoietyGeneral Materials ScienceCoordination geometrychemistry.chemical_classificationCrystallographycis arrangementHydrogen bondoxalate ligandsGeneral ChemistryCondensed Matter PhysicschemistryQD901-999N—H...O hydrogen bondingN—H⋯O hydrogen bondingcyclohexylammoniumActa Crystallographica Section E: Crystallographic Communications
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Synthesis and molecular and electronic structures of a series of Mo3CoSe4 cluster complexes with three different metal electron populations.

2008

The synthesis, crystal structure, and magnetic properties of [Mo 3(CoCO)Se 4(dmpe) 3Cl 3] ( 1), [Mo 3(CoCl)Se 4(dmpe) 3Cl 3] ( 2), and [Mo 3(CoCl)Se 4(dmpe) 3Cl 3](TCNQ) ([ 2](TCNQ)) (dmpe = 1,2-bis(dimethylphosphanyl)ethane; TCNQ = 7,7,8,8-tetracyanoquinomethane) cubane-type complexes with 16, 15, and 14 metal electrons, respectively, are reported. These compounds complete the series of cobalt-containing Mo 3CoQ 4 (Q = S, Se) cubane-type complexes, which allows a complete analysis of the consequences of replacing the inner chalcogen and the metal electron count on the structural, magnetic, and electrochemical properties. The experimental evidence is theoretically supported and rationalized…

ChemistryHeteroatomElectronCrystal structureElectrochemistrylaw.inventionInorganic ChemistryMetalChalcogenCrystallographylawComputational chemistryvisual_artvisual_art.visual_art_mediumPhysical and Theoretical ChemistryElectron paramagnetic resonanceHOMO/LUMOInorganic chemistry
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N-Methyl-4-(4-nitrophenyl)-N-nitroso-1,3-thiazol-2-amine

2017

The title compound, C10H8N4O3S, is almost planar [dihedral angle between the rings = 2.2 (2)°; r.m.s. deviation for the non-H atoms = 0.050 Å]. In the crystal, C—H...O and C—H...N hydrogen bonds link the molecules into (10-2) layers.

crystal structureHydrogen bondthia­zoleNitrosoCrystal structureDihedral angle010402 general chemistry010403 inorganic & nuclear chemistry01 natural sciencesMedicinal chemistry0104 chemical sciencesCrystalchemistry.chemical_compoundN-nitro­saminesN-nitrosamineschemistrylcsh:QD901-999NitroAmine gas treatinglcsh:CrystallographyThiazolethiazoleIUCrData
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