Search results for "Magnetism"

showing 10 items of 1934 documents

Oxo-Vanadium(IV) Dihydrogen Phosphate: Preparation, Magnetic Study, and Heterogeneous Catalytic Epoxidation

2008

A layered oxo-vanadium(IV) dihydrogen phosphate, {VO(H2PO 4)2} n has been synthesized hydrothermally and characterized by several physicochemical methods. Single-crystal X-ray analysis (crystal system, tetragonal; space group, P4/ ncc; unit cell dimensions, a = b = 8.9632(4), c = 7.9768(32) A) of {VO(H2PO4) 2} n reveals that the compound has an extended two-dimensional structure. The VO2+ moieties are connected through bridging H 2PO4 (-) ions, and this type of connection propagates parallel to the crystallographic ab plane which gives rise to a layered structure. The layers are staked parallel to the crystallographic c axis with a separation between the layers of ca. 4.0 A. Magnetic suscep…

StereochemistryCrystal systemVanadiumchemistry.chemical_elementSurfaces and InterfacesAtmospheric temperature rangeCondensed Matter PhysicsMagnetic susceptibilityCatalysisTetragonal crystal systemchemistry.chemical_compoundCrystallographychemistryElectrochemistryAntiferromagnetismGeneral Materials ScienceAcetonitrileSpectroscopyLangmuir
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Ferromagnetism and Chirality in Two-Dimensional Cyanide-Bridged Bimetallic Compounds

2002

The combination of hexacyanoferrate(III) anions, [Fe(CN)(6)](3)(-), with nickel(II) complexes derived from the chiral ligand trans-cyclohexane-1,2-diamine (trans-chxn) affords the enantiopure layered compounds [Ni(trans-(1S,2S)-chxn)(2)](3)[Fe(CN)(6)](2).2H(2)O (1) and [Ni(trans-(1R,2R)-chxn)(2)](3)[Fe(CN)(6)](2).2H(2)O (2). These chiral systems behave as ferromagnets (T(c) = 13.8 K) with a relatively high coercive field (H(c) = 0.17 T) at 2 K. They also exhibit an unusual magnetic behavior at low temperatures that has been attributed to the dynamics of the magnetic domains in the ordered phase.

StereochemistryCyanideChiral ligandchemistry.chemical_elementCoercivityInorganic ChemistryNickelCrystallographychemistry.chemical_compoundEnantiopure drugFerromagnetismchemistryPhysical and Theoretical ChemistryChirality (chemistry)Bimetallic stripInorganic Chemistry
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[FeIILSCoIIILS]2⇔ [FeIIILSCoIIHS]2 photoinduced conversion in a cyanide-bridged heterobimetallic molecular square

2010

The self-assembly of [Fe(III){B(pz)(4)}(CN)(3)](-) and [Co(II)(bik)(2)(S)(2)](2+) affords the diamagnetic cyanide-bridged [Fe(II)(LS)Co(III)(LS)](2) molecular square which is converted into the corresponding magnetic [Fe(III)(LS)Co(II)(HS)](2) species under light irradiation at relatively low temperatures.

StereochemistryCyanideMetals and AlloysLight irradiationGeneral ChemistryCatalysisSquare (algebra)Surfaces Coatings and FilmsElectronic Optical and Magnetic Materialschemistry.chemical_compoundCrystallographychemistryMaterials ChemistryCeramics and CompositesDiamagnetismChemical Communications
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Magnetic properties of vanadium(IV)-based extended systems: [(VO)3(μ-PO4)2(2,2′-bpy)(μ-OH2)]*1/3H2O and (VO)2H4P2O9

2013

International audience; The magnetic properties of [(VO)3(μ-PO4)2(2,2′-bpy)(μ-OH2)]1/3H2O (1) and (VO)2H4P2O9 (2), a tubular and a layered vanadium(IV) phosphates containing triply oxido bridged VIV dimers, are analyzed considering the Bleaney-Bowers S = 1/2 dimer model. In compound 1 the presence of an additional VIV connected with the VIV dimers through μ1,2-PO43− bridges is described with a Curie-Weiss type correction. This model reproduces the magnetic properties of compound 1 with g = 1.956, Jdim = −102.1 cm−1, θ = −0.4 cm−1 and Nα = 278 × 10−6 emu mol−1. In compound 2, the presence of a small percentage of paramagnetic impurity has to be considered to account for the divergence of χm …

StereochemistryDimermolecular magnetismVanadiumchemistry.chemical_elementVPO02 engineering and technology010402 general chemistry01 natural sciencesDFTInorganic ChemistryParamagnetismchemistry.chemical_compoundImpurityhybrid materialsMaterials ChemistryAntiferromagnetismPhysical and Theoretical Chemistry[CHIM.MATE]Chemical Sciences/Material chemistry021001 nanoscience & nanotechnology0104 chemical sciencesCrystallographyMonomerchemistrySuperexchangevanadium0210 nano-technologyHybrid material
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S-shaped decanuclear heterometallic [Ni8Ln2] complexes [Ln(iii) = Gd, Tb, Dy and Ho]: theoretical modeling of the magnetic properties of the gadolini…

2014

The reaction of 8-quinolinol-2-carboaldoxime (LH2) with Ni(II) and Ln(III) salts afforded the heterometallic decanuclear compounds [Ni8Dy2(μ3-OH)2(L)8(LH)2(H2O)6](ClO4)2·16H2O (1), [Ni8Gd2(μ3-OH)2(L)8(LH)2(H2O)4(MeOH)2](NO3)2·12H2O (2), [Ni8Ho2(μ3-OH)2(L)8(LH)2(H2O)4(MeOH)2](ClO4)2·2MeOH·12H2O (3) and [Ni8Tb2 (μ3-OH)2(L)8(LH)2(MeOH)4(OMe)2]·2CH2Cl2·8H2O (4). While compounds 1-3 are dicationic, compound 4 is neutral. These compounds possess an S-shaped architecture and comprise a long chain of metal ions bound to each other. In all the complexes, the eight Ni(II) and two Ln(III) ions of the multimetallic ensemble are hold together by two μ3-OH, eight dianionic (L(2-)) and two monoanionic oxi…

StereochemistryGadoliniumMetal ions in aqueous solutionchemistry.chemical_elementOximeIonInorganic Chemistrychemistry.chemical_compoundMolecular wireCrystallographychemistryFerromagnetismAntiferromagnetismDerivative (chemistry)Dalton Trans.
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Intramolecular ferro- and antiferromagnetic interactions in oxo-carboxylate bridged digadolinium(iii) complexes

2010

Two new digadolinium(III) complexes with monocarboxylate ligands, [Gd2(pac)6(H2O)4] (1) and [Gd2(tpac)6(H2O)4] (2) (Hpac = pentanoic acid and Htpac = 3-thiopheneacetic acid), have been prepared and their structures determined by X-ray diffraction on single crystals. Their structures consist of neutral and isolated digadolinium(III) units, containing six monocarboxylate ligands and four coordinated water molecules, the bridging skeleton being built by a muO(1):kappa2O(1)O(2) framework. This structural pattern has already been observed in the parent acetate-containing compound [Gd2(ac)6(H2O)4] x 4 H2O (3) whose structure and magnetic properties were reported elsewhere (L. Cañadillas-Delgado, …

StereochemistryGadoliniumchemistry.chemical_elementAtmospheric temperature rangeMagnetic susceptibilitySquare antiprismInorganic ChemistryCrystallographychemistry.chemical_compoundchemistryIntramolecular forceAntiferromagnetismMoleculeCarboxylateDalton Transactions
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Dinuclear and two- and three-dimensional gadolinium(III) complexes with mono- and dicarboxylate ligands: synthesis, structure and magnetic properties

2009

Three new gadolinium(III) complexes with carboxylate ligands of formula [Gd2(ac)6(H2O)4]·2H2O (1), [Gd2(ac)2(fum)2(H2O)4]n (2) and [Gd2(ox)(fum)2(H2O)4]n·4nH2O (3) (ac = acetate, fum = fumarate and ox = oxalate) have been prepared and their structures determined by X-ray diffraction on single crystals. The structure of 1 is made up of discrete centrosymmetric di-µ-oxo(carboxylate acetate)digadolinium(III) units with an intramolecular Gd⋯Gd separation of 4.1589(3) A. Each gadolinium atom in 1 is nine-coordinated with two water molecules and seven carboxylate-oxygen atoms from four acetate ligands building a monocapped square antiprism environment. Compound 2 exhibits a sheet-like structure, …

StereochemistryGadoliniumchemistry.chemical_elementGeneral ChemistryCondensed Matter PhysicsMagnetic susceptibilityOxalateSquare antiprismchemistry.chemical_compoundCrystallographychemistryIntramolecular forceAntiferromagnetismMoleculeGeneral Materials ScienceCarboxylateCrystEngComm
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Charge transfer salts containing a paramagnetic cyano-complex and iodine substituted organic donor involving –I(donor)···N(anion)-interactions

2005

Abstract The preparation, crystal structures, EHT band calculation and optical properties of two new charge transfer salts, namely (DIET)2[Fe(bpca)(CN)3] (1) and (DIEDO)2[Fe(bpca)(CN)3] (2), where bpca = bis(2-pyridylcarbonyl)amide anion, DIET = diiodoethylenedithotetrathiavalene and DIEDO = diiodoethylenedioxotetrathiavalene are reported. The magnetic properties of 2 and those of the low-spin iron(III) precursor of formula (PPh4)[Fe(bpca)(CN)3]·H2O (3) were also investigated in the temperature range 1.9–205 K. Crystal data; (1): monoclinic P21, a = 8.8238(2)A, b = 13.2891(3) A, c = 18.5042(5) A, β = 91.115(1)°, Z = 2, R = 0.0710 for 7021 independent reflections with I > 2 σ(I) and (2): Mon…

StereochemistryGeneral Chemical EngineeringInfrared spectroscopyGeneral ChemistryCrystal structureAtmospheric temperature rangeParamagnetismchemistry.chemical_compoundCrystallographychemistryAmideMoleculeAntiferromagnetismMonoclinic crystal systemComptes Rendus Chimie
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A two-dimensional magnetic architecture with bridging polynitrile and 2,2′-bipyrimidine ligands

2004

cited By 7; International audience; A new polymeric, two-dimensional compound [Co2(bpym)(dcne) 4 (H2O)2] (1) (dcne = [(CN)2CC(O) OEt)]- = 2,2-dicyano-1-ethoxyethenolate anion and bpym = 2,2'-bipyrimidine) has been synthesized and characterized by X-ray crystallography. The structure is monoclinic space group P21/a and consists of two-dimensional networks of octahedrally coordinated Co(II) ions, bridged by bis-bidentate 2,2'-bipyrimidine and μ2-dcne anions. Magnetic measurements revealed a broad maximum in the xm vs T plot at 20 K which is characteristic of antiferromagnetic exchange between the high spin cobalt(II) centres. © EDP Sciences.

StereochemistryGeneral Physics and Astronomychemistry.chemical_elementCrystal structure010402 general chemistry01 natural sciencesNegative ionsCobalt complexesIonAntiferromagnetismTransition metal[CHIM]Chemical SciencesAntiferromagnetism2.2'-bipyrimidine010405 organic chemistryOrganic polymersSpace groupX ray crystallographyMagnetic measurementsMagnetic susceptibility3. Good health0104 chemical sciencesCrystallographychemistrySynthesis (chemical)CobaltMonoclinic crystal systemJournal de Physique IV (Proceedings)
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Nanoporosity, Inclusion Chemistry, and Spin Crossover in Orthogonally Interlocked Two-Dimensional Metal-Organic Frameworks

2015

[Fe(tvp)(2)(NCS)(2)] (1) (tvp=trans-(4,4-vinylenedipyridine)) consists of two independent perpendicular stacks of mutually interpenetrated two-dimensional grids. This uncommon supramolecular conformation defines square-sectional nanochannels (diagonal approximate to 2.2nm) in which inclusion molecules are located. The guest-loaded framework 1@guest displays complete thermal spin-crossover (SCO) behavior with the characteristic temperature T-1/2 dependent on the guest molecule, whereas the guest-free species 1 is paramagnetic whatever the temperature. For the benzene-guest derivatives, the characteristic SCO temperature T-1/2 decreases as the Hammet sigma(p) parameter increases. In general, …

StereochemistryIronOrganic ChemistrySupramolecular chemistryInclusion compoundsInterpenetrationGeneral ChemistryMetal-organic frameworksSpin crossoverCatalysischemistry.chemical_compoundParamagnetismCrystallographyBenzonitrilechemistrySpin crossoverFISICA APLICADAPerpendicularMoleculeMetal-organic frameworkAcetonitrileChemistry - A European Journal
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