Search results for "spin [structure function]"

showing 10 items of 1132 documents

Insertion of FeII complexes with Schiff base ligands derived from imidazole or pyridine into 3D bimetallic oxalate-based ferromagnets

2013

Abstract The syntheses, structures and magnetic properties of the compounds [FeII(imid2-trien)][MnII(CH3OH)CrIII(ox)3]2·(CH3OH)4(CH3CN)(H2O) (1), [FeII(tren(6-Me-py)3)][MnIICrIII(ox)3][MnII(CH3OH)0.58(H2O)0.42CrIII(ox)3]·(CH3OH)2(CH3CN)0.5(H2O)0.42 (2) and [FeII(tren(imid)3)]2[Mn2.5(CH3OH)3Cr3(ox)9]·(CH3OH)4.75·(H2O)4.25 (3) are reported. They are prepared by the insertion of FeII-Schiff base complexes derived from imidazole and pyridine into bimetallic oxalate networks. Different types of 3D oxalate networks are obtained for each templating cation. Thus, [FeII(imid2-trien)]2+ and [FeII(tren(6-Me-py)3)]2+ give rise to unusual 3D achiral bimetallic oxalate networks with heptacoordinated MnII…

chemistry.chemical_classificationDenticitySchiff base010405 organic chemistryStereochemistry010402 general chemistry01 natural sciencesOxalate0104 chemical sciencesCoordination complexInorganic Chemistrychemistry.chemical_compoundCrystallographychemistrySpin crossoverPyridineMaterials ChemistryImidazolePhysical and Theoretical ChemistryBimetallic stripPolyhedron
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Syntheses, crystal structures and magnetic properties of five new manganese(ii) complexes: Influence of the conformation of different alkyl/aryl subs…

2014

et al.

chemistry.chemical_classificationDenticityStereochemistrychemistry.chemical_elementGeneral ChemistryManganeseCrystal structureCondensed Matter PhysicsCrystallographychemistry.chemical_compoundMalonatechemistryGeneral Materials ScienceCarboxylateSingle crystalAlkylSpin canting
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2D Bimetallic Oxalate‐Based Ferromagnets with Inserted [Fe(4‐Br‐sal 2 ‐trien)] + and [Fe(3‐R‐sal 2 ‐trien)] + (R = Br, Cl and CH 3 O) Fe III Spin‐Cro…

2012

The syntheses, structures and magnetic properties of the compounds of formula [FeIII(4-Br-sal2-trien)][MnIICrIII(ox)3]0.67Cl0.33·CH3OH_solvate (1), [FeIII(3-Br-sal2-trien)][MnIICrIII(ox)3]·(CH3CN)2 (2), [FeIII(3-Cl-sal2-trien)][MnIICrIII(ox)3]·(CH3OH)2·(CH3CN)2 (3) and [FeIII(3-CH3O-sal2-trien)][MnIICrIII(ox)3]·(CH3OH)·(H2O)1.5·(CH2Cl2)0.5 (4) are reported. The four structures present a 2D honeycomb anionic layer formed by MnII and CrIII ions linked through oxalate ligands and a cationic layer of the FeIII complexes intercalated between the 2D oxalate network. The main differences compared with previous 2D oxalate-based structures are the presence of double layers of cations in compounds 1,…

chemistry.chemical_classificationInorganic chemistryCationic polymerization02 engineering and technology010402 general chemistry021001 nanoscience & nanotechnology01 natural sciencesLIESSTOxalate3. Good health0104 chemical sciencesCoordination complexInorganic Chemistrychemistry.chemical_compoundCrystallographyFerromagnetismchemistrySpin crossoverMolecule0210 nano-technologyBimetallic stripEuropean Journal of Inorganic Chemistry
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Spin crossover FeII complexes as templates for bimetallic oxalate-based 3D magnets

2007

Abstract We present the synthesis and structural characterization of the salt [Fe(bpp)2][MnCr(ox)3]2 · bpp · CH3OH. It crystallizes in the monoclinic space group. This material contains an anionic [MnCr(ox)3]− 3D 10-gon ferromagnetic network, that orders below 3.0 K. The channels created by this architecture are filled by the spin crossover cations [Fe(bpp)2]2+ (bpp = 2,6(bispyrazol-3-yl)pyridine), free ligand and solvent molecules. No spin transition has been observed at ambient pressure.

chemistry.chemical_classificationInorganic chemistrySpin transitionOxalateCoordination complexInorganic Chemistrychemistry.chemical_compoundCrystallographychemistryFerromagnetismSpin crossoverPyridineMaterials ChemistryPhysical and Theoretical ChemistryBimetallic stripMonoclinic crystal systemPolyhedron
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Spin transition in three-dimensional bridged coordination polymers of iron(II)–urea-triazoles

2008

Abstract Three-dimensional spin-crossover (SCO) networks of [Fe 2 ( n -Rdubtrz) 3 ](X) 4  ·  n H 2 O ( n -R = (CH 2 ) y , y  = 4, 6, 8, 12; du = diurea; btrz = bis-triazole; X = BF 4 - , ClO 4 - , triflate, tosylate) coordination polymers are prepared by reaction of bridging aliphatic bis-urea triazoles ( n -Rdubtrz) with the iron-salts (FeX 2 ). Investigations of the properties are supported by studies of one-dimensional compounds of [Fe(Rtrzu) 3 ](X) 2 (R =  n -propyl, t -butyl; trzu = urea triazole). Characterization of the complexes is carried out with IR-spectroscopy, elemental analysis, TGA and atomic absorption spectroscopy. SCO-behaviour of all complexes is inspected by magnetic sus…

chemistry.chemical_classificationInorganic chemistryTriazoleSpin transitionPolymerMagnetic susceptibilityIonInorganic Chemistrychemistry.chemical_compoundCrystallographychemistryMössbauer spectroscopyMaterials ChemistryPhysical and Theoretical ChemistryMethyleneTrifluoromethanesulfonateInorganica Chimica Acta
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Hofmann-Like Frameworks Fe(2-methylpyrazine)n[M(CN)2]2 (M = Au, Ag) : Spin-Crossover Defined by the Precious Metal

2020

Hofmann-like cyanometalates constitute a large class of spin-crossover iron(II) complexes with variable switching properties. However, it is not yet clearly understood how the temperature and cooperativity of a spin transition are influenced by their structure. In this paper, we report the synthesis and crystal structures of the metal–organic coordination polymers {FeII(Mepz)[AuI(CN)2]2} ([Au]) and {FeII(Mepz)2[AgI(CN)2]2} ([Ag]), where Mepz = 2-methylpyrazine, along with characterization of their spin-state behavior by variable-temperature SQUID magnetometry and Mössbauer spectroscopy. The compounds are built of cyanoheterometallic layers, which are pillared by the bridging Mepz…

chemistry.chemical_classificationLarge classOorganisk kemi010405 organic chemistryIronSpin transitionCooperativityPolymerCrystal structureAtmospheric temperature range010402 general chemistrySpin crossover01 natural sciences0104 chemical sciencesInorganic ChemistryCrystallographychemistrySpin crossovermagnetismMössbauer spectroscopyPhysical and Theoretical ChemistryMOF
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Spin state switching in iron coordination compounds

2013

The article deals with coordination compounds of iron(II) that may exhibit thermally induced spin transition, known as spin crossover, depending on the nature of the coordinating ligand sphere. Spin transition in such compounds also occurs under pressure and irradiation with light. The spin states involved have different magnetic and optical properties suitable for their detection and characterization. Spin crossover compounds, though known for more than eight decades, have become most attractive in recent years and are extensively studied by chemists and physicists. The switching properties make such materials potential candidates for practical applications in thermal and pressure sensors …

chemistry.chemical_classificationLigand field theorycagespolyfunctional materialsSpin statesOrganic Chemistryphysical techniquesSpin transitionNanotechnologySpin engineeringiron(II) coordination compoundsReviewLIESSTCoordination complexCharacterization (materials science)lcsh:QD241-441Chemistrychemistryspin crossoverlcsh:Organic chemistryChemical physicsSpin crossoverCondensed Matter::Strongly Correlated Electronslcsh:Qlcsh:ScienceBeilstein Journal of Organic Chemistry
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Bimodal Effect of Amphiphilic Biocide Concentrations on Fluidity of Lipid Membranes

1996

Abstract Using the spin label method (ESR) it has been shown that biologically active, amphiphilic compounds (quaternary ammonium salts -AS) containing polar heads with single and double positive charge caused, at low concentrations, decrease fluidity of liposome membranes formed with egg yolk lecithin (EYL). At higher concentrations an increase in fluidity was observed. With compounds having a single positive charge minimum fluidity of membrane structure occurs in the range of 1 to 3%, with compounds containing double positive charge -in the range of 4 -6 % . That effect does not depend on polar head size and length of alkyl chains of the AS used. Analysis of the electrostatic interaction …

chemistry.chemical_classificationLiposomefood.ingredientMembrane FluidityBinding energyInorganic chemistryElectron Spin Resonance SpectroscopyEgg YolkModels BiologicalLecithinGeneral Biochemistry Genetics and Molecular BiologyDivalentCyclic N-OxidesQuaternary Ammonium CompoundsMembranefoodchemistryBiochemistryLiposomesPhosphatidylcholinesMembrane fluiditySpin LabelsUltrasonicsSpin labelAlkylZeitschrift für Naturforschung C
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Fluidity of liposome membranes doped with organic tin compounds: ESR study.

2008

The kinetics of change in the fluidity of liposome membranes, obtained in the process of sonication of Egg Yolk Lecithin (EYL), with the admixture of organic tin compounds, was investigated. Five compounds were selected for the research: three differed in the length of hydrocarbon chains, (CH(3))(4)Sn, (C(2)H(5))(4)Sn, and (C(3)H(7))(3)SnCl, whereas two differed in the number of aromatic rings, (C(6)H(5))(2)SnCl(2) and (C(6)H(5))(3)SnCl. The concentration of the compounds in proportion to EYL was 2 mol-%. Electron Spin (paramagnetic) Resonance (ESR) was applied using two spin probes TEMPO (2,2,6,6-tetramethylpiperidine-1-oxyl) and 16-DOXYL-stearic acid methyl ester (2-ethyl-2-(15-methoxy-15…

chemistry.chemical_classificationLiposomefood.ingredientTime FactorsMolecular StructureChemistryMembrane FluiditySonicationKineticsAnalytical chemistryElectron Spin Resonance SpectroscopyPharmaceutical Sciencechemistry.chemical_elementAromaticityStereoisomerismLecithinKineticsfoodHydrocarbonMembraneLiposomesOrganotin CompoundsTinJournal of liposome research
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Chemical Applications of Mössbauer Spectroscopy

2012

The Tutorial Lecture begins with a brief recapitulation of the hyperfine interactions and the relevant parameters observable in a Mossbauer spectrum. The main chapter with selected examples of chemical applications of Mossbauer spectroscopy follows and is subdivided into sections on: basic information on structure and bonding; switchable molecules (thermal spin transition in mono- and oligonuclear coordination compounds, light-induced spin transition, nuclear-decay-induced spin transition, spin transition in metallomesogens); mixed-valency in biferrocenes and other iron coordination compounds, and in an europium intermetallic compound; electron transfer in Prussian blue-analog complexes; mo…

chemistry.chemical_classificationMagnetismChemistrySpin transitionchemistry.chemical_elementNanotechnologyQuadrupole splittingCoordination complexCondensed Matter::Materials ScienceMössbauer spectroscopyPhysical chemistryMoleculeCondensed Matter::Strongly Correlated ElectronsEuropiumHyperfine structure
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