Search results for "Spin crossover"

showing 10 items of 379 documents

Spin transition in [Fe(phen)2(NCS)2] - �SR study

2004

The reversible thermal spin transition which occurs in [Fe(phen)(2)(NCS)(2)] around T-1/2 similar to 177 K has been investigated by muon spin relaxation (muSR) (similar to10-280 K). The depolarisation curves are well described by two Lorentzian lines represent fast and slow components in the decay curves, with the initial asymmetry parameter of the fast component found to track the spin transition in [Fe(phen)2(NCS),]. Comparison of zero-field and transverse field (20 Oe) muSR measurements shows that diamagnetic muonic species occur over the entire temperature range.

Condensed matter physicsChemistrymedia_common.quotation_subjectRelaxation (NMR)Analytical chemistrySpin transitionAtmospheric temperature rangeMuon spin spectroscopyCondensed Matter PhysicsAsymmetryElectronic Optical and Magnetic MaterialsSpin crossoverThermalDiamagnetismmedia_commonphysica status solidi (a)
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Modeling the magnetic properties and Mössbauer spectra of multifunctional magnetic materials obtained by insertion of a spin-crossover Fe(III) comple…

2013

In this article, we present a theoretical microscopic approach to describe the magnetic and spectroscopic behavior of multifunctional hybrid materials which demonstrate spin crossover and ferromagnetic ordering. The low-spin to high-spin transition is considered as a cooperative phenomenon that is driven by the interaction of the electronic shells of the Fe ions with the full symmetric deformation of the local surrounding that is extended over the crystal lattice via the acoustic phonon field. The proposed model is applied to the analysis of the series [Fe(III)(sal2-trien)] [Mn(II)Cr(III)(ox)3]·solv, in short 1·solv, where solv = CH2Cl2, CH2Br2, and CHBr3.

Condensed matter physicsField (physics)ChemistryPhononInorganic chemistryCrystal structureOxalateInorganic Chemistrychemistry.chemical_compoundFerromagnetismSpin crossoverPhysical and Theoretical ChemistryHybrid materialBimetallic stripInorganic chemistry
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Debye-Waller factor in the spin crossover complex Fe(ppi)2(NCS)2

1997

Abstract Mossbauer spectroscopy and magnetic susceptibility measurements for the complex Fe(ppi) 2 (NCS) 2 in the temperature range 11–300 K indicate that the spin transition of this compound is incomplete until 11 K. The similar Debye-Waller factors in high spin (HS) and low spin (LS) states is shown by the comparison of the HS fractions from the two different methods. The Debye temperature of the compound was calculated from the defined Debye-Waller factors obtained from Mossbauer measurement at each experimental temperature and was found to depend on the temperature as well as on the HS fraction. The modification of the Debye-Waller factors in the HS and LS states for the HS fraction fro…

Condensed matter physicsMössbauer effectChemistryAnalytical chemistrySpin transitionAtmospheric temperature rangeCondensed Matter PhysicsMagnetic susceptibilitysymbols.namesakeSpin crossoversymbolsGeneral Materials ScienceDebye–Waller factorSpin (physics)Debye modelMaterials Chemistry and Physics
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Pressure Effect on Spin Crossover in [Fe(phen)2(NCS)2] and [CrI2(depe)2]

2004

In the present article, we discuss the results of investigations of the influence of hydrostatic pressure (up to 1.2 GPa) on the spin transition behavior in [Fe(phen)2(NCS)2] polymorph II and [CrI2(depe)2]. It is demonstrated that pressure effect studies are very helpful in elucidating the mechanism of cooperative dynamic electronic structure phenomena accompanied by significant volume changes. Application of hydrostatic pressure serves as a tool for modifying the ligand field strength in a controlled manner.

Condensed matter physicsSpin crossoverChemistryHydrostatic pressureSpectrochemical seriesMaterials ChemistrySpin transitionPhysical chemistryElectronic structurePhysical and Theoretical ChemistrySurfaces Coatings and FilmsThe Journal of Physical Chemistry B
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Temperature and pressure effects on the spin state of ferric ions in the [Fe(sal2-trien)][Ni(dmit)2] spin crossover complex

2008

Abstract Thermal and pressure effects have been investigated on the [Fe(sal 2 -trien)][Ni(dmit) 2 ] spin crossover complex by means of Mossbauer spectroscopic, calorimetric, X-ray diffraction and magnetic susceptibility measurements. The complex displays a complete thermal spin transition between the S = 5 2 and S = 1 2 spin states of Fe III near 245 K with a hysteresis loop of ca. 30 K. This transition is characterised by a change of the enthalpy, Δ H HL =7 kJ/mol, entropy, Δ S HL =29 J/Kmol, and the unit cell volume, Δ V HL =15.4 A 3 . Under hydrostatic pressures up to 5.7 kbar the thermal transition shifts to higher temperatures by ca. 16 K/kbar. Interestingly, at a low applied pressure …

Condensed matter physicsSpin statesChemistryHydrostatic pressureEnthalpySpin transitionAnalytical chemistry02 engineering and technologyGeneral Chemistry010402 general chemistry021001 nanoscience & nanotechnologyCondensed Matter PhysicsMagnetic hysteresis01 natural sciencesMagnetic susceptibility0104 chemical sciencesDifferential scanning calorimetrySpin crossoverGeneral Materials Science0210 nano-technologyJournal of Physics and Chemistry of Solids
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Modelling of two step high spin⇌low spin transitions using the cluster variation method

1998

Abstract A thermodynamic description of high spin (HS)⇌low spin (LS) transition curves beyond the Bragg–Williams approximation is given using the Kikuchi cluster variation method (CVM). Transition curves of unusual behaviour (i.e. two step transition) are reproduced by short range interaction energies which are present in addition to long range elastic interaction between the spin changing molecules. The correlations in the distribution of the spin changing centers can be expressed analytically. They give rise to a reduced mixing entropy which was found experimentally in compounds with two step transitions.

Condensed matter physicsSpin statesSpin crossoverIsing systemChemistryTwo stepMoleculeGeneral Materials ScienceIsing modelGeneral ChemistryCondensed Matter PhysicsEntropy (order and disorder)Journal of Physics and Chemistry of Solids
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Spin crossover behaviour in the iron(II)-2,2-dipyridilamine system: Synthesis, X-ray structure and magnetic studies

2005

Abstract The monomeric compounds [Fe(dpa)2(X)2] · solv [X = NCS−(solv = 0.5H2O) (1), N ( CN ) 2 - (2) and dpa = 2,2-dipyridilamine] have been synthesised and characterised. They crystallise in the P21/n and in the Cc monoclinic systems, respectively. Four of six nitrogen atoms coordinated to the Fe(II) ions belong to two dpa ligands which lie in cis conformation. The remaining positions are occupied by two nitrogen atoms of the pseudo-halide ligands. The magnetic susceptibility measurements at ambient pressure have revealed that compound 1 exhibits an incomplete spin crossover behaviour (T1/2 ≈ 88 K), whereas compound 2 remains in the high-spin configuration. Pressure studies performed on c…

Condensed matter physicsX-raychemistry.chemical_elementNitrogenMagnetic susceptibilityIonInorganic Chemistrychemistry.chemical_compoundCrystallographyMonomerchemistrySpin crossoverMaterials ChemistryPhysical and Theoretical ChemistryMonoclinic crystal systemAmbient pressureInorganica Chimica Acta
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Cooperative Spin Transition in the Two-Dimensional Coordination Polymer [Fe(4,4′-bipyridine)2(NCX)2]·4CHCl3 (X = S, Se)

2011

Two new isostructural two-dimensional (2D) coordination polymers exhibiting spin crossover (SCO) behavior of formulation [Fe(4,4'-bipy)(2)(NCX)(2)]·4CHCl(3) (4,4'-bipy = 4,4'-bipyridine; X = S [1·4CHCl(3)], Se [2·4CHCl(3)]) have been synthesized and characterized, and both undergo cooperative spin transitions (ST). For 1·4CHCl(3) the ST takes place in two steps with critical temperatures of T(c1)(down) = 143.1 K, T(c2)(down) = 91.2 K, T(c1)(up) = 150.7 K, and T(c2)(up) = 112.2 K. 2·4CHCl(3) displays half ST characterized by T(c)(down) = 161.7 K and T(c)(up) = 168.3 K. The average enthalpy and entropy variations and cooperativity parameters associated with the ST have been estimated to be ΔH…

Coordination polymerEnthalpySpin transitionCooperativity44'-BipyridineInorganic Chemistrychemistry.chemical_compoundCrystallographyBipyridineNuclear magnetic resonancechemistrySpin crossoverPhysical and Theoretical ChemistryIsostructuralInorganic Chemistry
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Spin Crossover Iron(II) Coordination Polymer Chains: Syntheses, Structures, and Magnetic Characterizations of [Fe(aqin) 2 (μ 2 -M(CN) 4 )] (M = Ni(II…

2014

International audience; New Fe(II) coordination polymeric neutral chains of formula [Fe(aqin)2(μ2-M(CN)4)] (M = NiII (1) and PtII (2)) (aqin = Quinolin-8-amine) have been synthesized and characterized by infrared spectroscopy, X-ray diffraction, and magnetic measurements. The crystal structure determinations of 1–2 reveal in both cases a one-dimensional structure in which the planar [M(CN)4]2– (M = NiII (1) and PtII (2)) anion acts as a μ2-bridging ligand, and the two aqin molecules as chelating coligands. Examination of the intermolecular contacts in the two compounds reveals that the main contacts are ascribed to hydrogen bonding interactions involving the amine groups of the aqin chelati…

Coordination polymerInfraredInorganic chemistry[CHIM.MATE]Chemical Sciences/Material chemistryInorganic Chemistrychemistry.chemical_compoundchemistry13. Climate actionSpin crossoverPolymer chemistry[CHIM.CRIS]Chemical Sciences/Cristallography[CHIM]Chemical SciencesAmine gas treatingPhysical and Theoretical Chemistry
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Thermal-, pressure- and light-induced spin-crossover behviour in the two-dimensional Hofman-like coordination polymer [Fe(3-Clpy)2Pd(CN)4]

2013

The thermal spin-crossover behaviour, photoexcitation and subsequent relaxation, as well as the pressure-induced spincrossover behaviour at 298 K are discussed for the non-porous two-dimensional Hofmann-like coordination polymer [Fe(3-Clpy)(2)Pd(CN)(4)] (1). The title compound undergoes a two-step, cooperative thermal-induced SCO with critical temperatures T-c1(down arrow) = 159.6 K and T-c1(up arrow) = 164.5 K for the first step and T-c2(down arrow) = 141.4 K and T-c2(up arrow) = 148.4 K for the second step. Irradiation of the low-spin state with green light (514 nm) at 10 K induced the photoexcitation of around 60% of the iron(II) centres to the high-spin state (LIESST effect). The subseq…

Coordination polymerIronEnthalpyCooperativity02 engineering and technology010402 general chemistryPhotochemistry01 natural sciencesLIESSTAbsorptionInorganic Chemistrychemistry.chemical_compoundSpin crossoverRelaxation (NMR)[CHIM.MATE]Chemical Sciences/Material chemistry021001 nanoscience & nanotechnologyPhotomagnetismSpin crossover0104 chemical sciencesPhotoexcitationCoordination polymersCrystallographychemistryFISICA APLICADA0210 nano-technologyPhotomagnetism
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