0000000001307145

AUTHOR

Jean-françois Létard

showing 27 related works from this author

Spin crossover behavior under pressure of Fe(PM-L)2(NCS)2 compounds with substituted 2′-pyridylmethylene 4-anilino ligands

1998

Abstract New iron(II) spin crossover systems with large aromatic ligands, based on 2′-pyridylmethylene 4-anilino units, have been synthesized and studied. The whole range of spin crossover behavior has been observed, starting from pure high-spin to more or less complete gradual transitions and finally to discontinuous type transitions with both small and large hysteresis. Magnetic measurements under pressure have revealed that two of the compounds exhibit pressure-induced new phases with larger hysteresis than at atmospheric pressure. For one of the compounds the formation of this new phase is irreversible and the hysteresis width is ∼100 K, as compared to 37 K before applying pressure.

Range (particle radiation)HysteresisCrystallographyMagnetic measurementsAtmospheric pressureSpin crossoverChemistryPhase (matter)Analytical chemistryGeneral Physics and AstronomyPhysical and Theoretical Chemistry
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Remarkable Steric Effects and Influence of Monodentate Axial Ligands L on the Spin-Crossover Properties of trans-[FeII(N4 ligand)L] Complexes

2007

Iron(II) complexes obtained from tetradentate, rigid, linear N4 ligands have been investigated to appraise the influence of steric effects and the impact of trans-coordinated anions on the spin-transition behavior. As expected, the well-designed ligands embrace the metal center, resulting in octahedral iron(II) complexes where the basal plane is fully occupied by the pyridine/pyrazole N4 ligand, while anions or solvent molecules are exclusively axially coordinated. Precursor complexes, namely, [Fe(bpzbpy)(MeOH)2](BF4)2 (where bpzbpy symbolizes the ligand 6,6'-bis(N-pyrazolylmethyl)-2,2'-bipyridine) and [Fe(mbpzbpy)(MeOH)2](BF4)2 (where mbpzbpy symbolizes the ligand 6,6'-bis(3,5-dimethyl-N-p…

Steric effectsDenticityTetradentate ligandThiocyanateMössbauer spectroscopy010405 organic chemistryLigandStereochemistry[CHIM.MATE]Chemical Sciences/Material chemistryIron complexesPyrazoleSpin crossover010402 general chemistry01 natural sciences0104 chemical sciencesInorganic Chemistrychemistry.chemical_compoundCrystallographychemistrySpin crossoverPyridinePhysical and Theoretical ChemistryDicyanamideInorganic 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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Spin crossover properties of the [Fe(PM-BiA)2(NCS)2] complex - phases I and II

2003

International audience; In the present review, we reexamine the photomagnetic properties of the [Fe(PM-BiA)2(NCS)2], cis-bis(thiocyanato)-bis[(N-2'-pyridylmethylene)-4-(aminobiphenyl)]iron(II), compound which exhibits, depending on the synthetic method, an exceptionally abrupt spin transition (phase I) with a very narrow hysteresis (T1/2O = 168 K and T1/2N = 173 K) or a gradual spin conversion (phase II) occurring at 190 K. In both cases, light irradiation in the tail of the 1MLCT-LS absorption band, at 830 nm, results in the population of the high-spin state according to the light-induced excited spin-state trapping (LIESST) effect. The capacity of a compound to retain the light-induced HS…

PopulationAnalytical chemistrySpin transition02 engineering and technology010402 general chemistry01 natural sciencesLIESSTSpin crossoverPhase (matter)educationKinetic relaxationeducation.field_of_studyCondensed matter physicsChemistryGeneral ChemistryIron(II)[CHIM.MATE]Chemical Sciences/Material chemistry021001 nanoscience & nanotechnologyPhotomagnetismSpin crossover0104 chemical sciencesKinetic relaxation.HysteresisExcited state0210 nano-technologyPhotomagnetism
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Photoinduced HS state in the first spin-crossover chain containing a cyanocarbanion as bridging ligand

2009

A new polymeric approach, based on cyanocarbanion ligands, for the design of spin crossover (SCO) compounds led us to the compound [Fe(abpt)2(tcpd)] (1) (tcpd^2 = (C[C(CN)2|3)^2 , abpt = 4-amino-3,5-bis(pyridin-2-yl)-1,2,4-triazole) which has been characterised as the first SCO molecular chain involving a cyanocarbanion as bridging ligand. Gomez Garcia, Carlos Jose, Carlos.Gomez@uv.es

Cyanocarbanion ligandsChemistryStereochemistryUNESCO::QUÍMICAPolimeryc approachMetals and AlloysBridging ligandBridging ligandGeneral ChemistryState (functional analysis)UNESCO::QUÍMICA::Química macromolecular:QUÍMICA [UNESCO]CatalysisSurfaces Coatings and FilmsElectronic Optical and Magnetic MaterialsChain (algebraic topology)Polimeryc approach ; Cyanocarbanion ligands ; Photoinduction ; Bridging ligandSpin crossoverPhotoinductionMaterials ChemistryCeramics and Composites:QUÍMICA::Química macromolecular [UNESCO]
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Effect of metal dilution on the light-induced spin transition in [FexZn1-x(phen)2(NCS)2] (phen = 1,10-phenanthroline)

2008

International audience; The thermal and light-induced spin transitions in [FexZn1-x(phen)2(NCS)2] (phen = 1,10-phenantholine) have been investigated by magnetic susceptibility, photomagnetism and diffuse reflectivity measurements. These complexes display a thermal spin transition and undergo the light-induced excited spin state trapping (LIESST) effect at low temperatures. For each compound, the thermal spin transition temperature, T1/2, and the relaxation temperature of the photo-induced high-spin state, T(LIESST), have been systematically determined. It appears that T1/2 decreases with the metal dilution while T(LIESST) remains unchanged. This behaviour is discussed on the basis of the ki…

Spin statesPhenanthrolineAnalytical chemistrySpin transition010402 general chemistry01 natural sciencesLIESSTInorganic ChemistryMagnetic susceptibilitychemistry.chemical_compoundChemical compoundsDiffuse reflectivity measurements010405 organic chemistryMetalRelaxation (NMR)[CHIM.MATE]Chemical Sciences/Material chemistryPhotomagnetismMagnetic susceptibility3. Good health0104 chemical scienceschemistryExcited statePhysical chemistryCondensed Matter::Strongly Correlated ElectronsLIESSTPhotomagnetism
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Light Induced Excited Pair Spin State in an Iron(II) Binuclear Spin-Crossover Compound

1999

Colloid and Surface ChemistrySpin statesSpin crossoverChemistryExcited stateLight inducedGeneral ChemistryAtomic physicsBiochemistryCatalysisJournal of the American Chemical Society
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Critical temperature of the LIESST effect in iron(II) spin crossover compounds

1999

Abstract The light-induced crossover in a series of iron(II) compounds has been investigated by irradiating the sample at 10 K with a Kr + laser coupled to an optical fiber within a SQUID cavity. The temperature dependence of the molar fraction of the light-induced metastable HS state has been recorded for 22 compounds. The critical LIESST temperature, T c (LIESST), has been defined as the temperature for which the light-induced HS information was erased in the SQUID cavity. The dependence of T c (LIESST) as a function of the thermal spin crossover temperature, T 1/2 , has been discussed. The effect of cooperation has been analyzed and the influence of horizontal and vertical displacements …

SquidCondensed matter physicsbiologyChemistryAnalytical chemistryGeneral Physics and AstronomyMole fractionPhotomagnetismLaserLIESSTlaw.inventionSpin crossoverlawbiology.animalMetastabilityThermalPhysical and Theoretical ChemistryChemical Physics Letters
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Spin-crossover in the [Fe(abpt)2(NCX)2] (X=S, Se) system: Structural, Magnetic, calorimetric and photomagnetic studies

1999

[EN] The compounds [Fe(abpt)(2)(NCS)(2)] (1) and [Fe(abpt)(2)(NCSe)(2)] (2) with abpt = 4-amino-3,5-bis(pyridin-2-yl)-1,2,4-triazole have been synthesized. The X-ray structures have been determined at 293 K. 1 and 2 are isostructural and crystallize in the monoclinic space group P2(1)/n with Z = 2, a = 8.538(8), b = 10.246(8), c = 16.45(2) Angstrom, beta = 93.98(9)degrees for 1 and a = 8.623(2), b = 10.243(3), c = 16.585(3) Angstrom, beta = 93.19(2)degrees for 2. In both complexes, the coordination core has a similar pseudo-octahedral geometry with the NCS- (1) and NCSe- (2) groups in the trans-position. Variable-temperature magnetic susceptibility data give evidence for a low-spin (LS)high…

Spin statesChemistryCrystal structureAtmospheric temperature rangeIron complexesMagnetic susceptibilitySelenocyanate complexesLIESSTInorganic ChemistryCrystallographyThiocyanate complexesSpin crossoverFISICA APLICADACrystal structuresMagnetic propertiesMaterials ChemistryPhysical and Theoretical ChemistryIsostructuralMonoclinic crystal system
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A hybrid magnet with coexistence of ferromagnetism and photoinduced Fe(iii) spin-crossover

2011

International audience; The insertion of a [Fe(sal2-trien)]+ complex cation into a 2D oxalate network results in a hybrid magnet with coexistence of magnetic ordering and photoinduced spin-crossover (LIESST effect) in compound [FeIII(sal2-trien)][MnIICrIII(ox)3]*(CH2Cl2) (1). A complete photomagnetic characterization together with a detailed structural analysis of the low-spin (LS) and high-spin (HS) structures of 1 is presented in order to understand such unusual behavior. This very rare and unexpected property in a FeIII spin-crossover complex, has been attributed to the strong distortion exhibited by the metastable HS state. Furthermore, 1 has shown that, in contrast to what has been pre…

010405 organic chemistryChemistryStereochemistry[CHIM.MATE]Chemical Sciences/Material chemistryGeneral Chemistry010402 general chemistry01 natural sciencesLIESSTOxalate0104 chemical scienceschemistry.chemical_compoundCrystallographyFerromagnetismSpin crossoverMetastabilityMagnetSpin (physics)Chemical Science
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An investigation of photo- and pressure-induced effects in a pair of isostructural two-dimensional spin-crossover framework materials

2014

International audience; Two new isostructural iron(II) spin-crossover (SCO) framework (SCOF) materials of the type [Fe(dpms)2 (NCX)2 ] (dpms=4,4'-dipyridylmethyl sulfide; X=S (SCOF-6(S)), X=Se (SCOF-6(Se))) have been synthesized. The 2D framework materials consist of undulating and interpenetrated rhomboid (4,4) nets. SCOF-6(S) displays an incomplete SCO transition with only approximately 30 % conversion of high-spin (HS) to low-spin iron(II) sites over the temperature range 300-4 K (T1/2 =75 K). In contrast, the NCSe(-) analogue, SCOF-6(Se), displays a complete SCO transition (T1/2 =135 K). Photomagnetic characterizations reveal quantitative light- induced excited spin-state trapping (LIES…

010405 organic chemistryChemistryIronOrganic ChemistrySpin transitionMineralogyGeneral Chemistry[CHIM.MATE]Chemical Sciences/Material chemistryAtmospheric temperature range010402 general chemistrySpin crossover01 natural sciencesCatalysisLIESST0104 chemical sciencesCoordination polymersChalcogenCrystallographySpin crossoverExcited stateMetastabilityMagnetic propertiesChalcogensIsostructural
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Cyanocarbanion-based spin-crossover materials: photocrystallographic and photomagnetic studies of a new iron(II) neutral chain

2010

International audience; A new iron(II) chain of formula [Fe(abpt)(2)(tcpd)] [1; (tcpd)(2-) = [C(10)N(6)](2-) = (C[C(CN)(2)](3))(2-) = 2-dicyanomethylene-1,1,3,3-tetracyanopropanediide anion, abpt = 4-amino-3,5-bis(pyridin-2-yl)-1,2,4-triazole] has been synthesized and characterized by IR spectroscopy, detailed variable-temperature single-crystal X-ray diffraction, magnetic and photomagnetic measurements. The crystal structure determination of 1 reveals a one-dimensional structural architecture in which the (tcpd)(2-) cyanocarbanion acts as a μ(2)-bridging ligand and the two abpt molecules act as chelating ligands. Detailed X-ray diffraction studies as a function of the temperature (293-10 K…

Coordination sphere010405 organic chemistryChemistryLigandRelaxation (NMR)Analytical chemistryInfrared spectroscopy[CHIM.MATE]Chemical Sciences/Material chemistryCrystal structure010402 general chemistry01 natural sciencesLIESST0104 chemical sciencesInorganic ChemistryCrystallographySpin crossoverMoleculePhysical and Theoretical Chemistry
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Photomagnetic properties of an Iron(II) low-spin complex with an unusually long-lived metastable LIESST state

2007

A comprehensive study of the photomagnetic behavior of the [Fe(L222N5)(CN)2].H2O complex has been carried out. This complex is characterized by a low-spin (LS) iron(II)-metal center up to 400 K and exhibits at 10 K the well-known Light-Induced Excited Spin State Trapping (LIESST) effect. The critical LIESST temperature (T(LIESST)) has been measured to be 105 K. The kinetics of the transition from the metastable high-spin (HS) state to the low-spin state have been determined and used for reproducing the experimental T(LIESST) curve. This study represents a second example of a fully low-spin iron(II)-metal complex up to 400 K, which can be photoexcited at low temperature with an atypical long…

Coordination sphereSpin states010405 organic chemistryChemistryKineticsCyanideTrappingMacrocyclic Schiff-base ligand[CHIM.MATE]Chemical Sciences/Material chemistryIron complexes010402 general chemistry01 natural sciencesLIESST0104 chemical sciencesInorganic ChemistryCrystallographyComputational chemistryExcited stateMetastabilityLIESSTPhysical and Theoretical ChemistrySpin (physics)
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Effect of the metal dilution on the thermal and light-induced spin transition in [FexMn1−x(bpp)2](NCSe)2: When T(LIESST) reaches T1/2

2008

International audience; The thermal and light-induced spin transition in [FexMn1−x(bpp)2](NCSe)2 (bpp = 2,6-bis(pyrazol-3-yl)pyridine) has been investigated by magnetic susceptibility, photomagnetism and diffuse reflectivity measurements. These complexes display a thermal spin transition and exhibit the light-induced excited spin state trapping (LIESST) effect at low temperature. For each mixed-crystal system, the thermal spin transition temperature, T1/2, and the relaxation temperature of the photo-induced high-spin state, T(LIESST), have been systematically determined. It appears that T1/2 decreases with the metal dilution while T(LIESST) remains unchanged, suggesting that the two interco…

Ligand field theoryCondensed matter physicsSpin states010405 organic chemistryChemistryRelaxation (NMR)Spin transition[CHIM.MATE]Chemical Sciences/Material chemistry010402 general chemistryPhotomagnetismSpin crossover01 natural sciencesMagnetic susceptibilityLIESST0104 chemical sciencesCoordination chemistryInorganic ChemistrySpin crossoverMaterials ChemistryPhysical chemistryPhysical and Theoretical ChemistryMetal dilutionPhotomagnetism
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Photo-switching spin pairs—synergy between LIESST effect and magnetic interaction in an iron(ii) binuclear spin-crossover compound

2001

The decrease of the magnetic response under irradiation at very low temperature was interpreted as a new evidence of synergy between magnetic interaction and spin transition in an iron(II) binuclear SC compound. Real Cabezos, Jose Antonio, Jose.A.Real@uv.es

Materials scienceMagneticIronUNESCO::QUÍMICASpin transitionComputer Science::Computational Geometry:QUÍMICA [UNESCO]CatalysisLIESSTSpin crossoverMaterials ChemistryIrradiationBinuclearSpin-½Photo-switchingCondensed matter physicsUNESCO::QUÍMICA::Química inorgánicaMetals and AlloysGeneral ChemistryMagnetic response:QUÍMICA::Química inorgánica [UNESCO]equipment and suppliesSurfaces Coatings and FilmsElectronic Optical and Magnetic MaterialsSynergyCeramics and CompositesLIESSTCondensed Matter::Strongly Correlated ElectronsMagnetic interactionhuman activitiesPhoto-switching ; Synergy ; LIESST ; Magnetic ; Iron ; BinuclearChemical Communications
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Influence of Metal Dilution on the Light‐Induced Spin Transition in Two 1D Chain Compounds: [Fe x Zn 1– x (btzp) 3 ](BF 4 ) 2 and [Fe x Zn 1– x (endi…

2008

The thermal and light-induced spin transitions in [FexZn1–x(btzp)3](BF4)2 and [FexZn1–x(endi)3](BF4)2 {btzp = 1,2-bis(tetrazol-1-yl)propane; endi = 1,2-bis(tetrazol-1-yl)ethane} chain compounds have been investigated by magnetic susceptibility, photomagnetism and diffuse reflectivity measurements. These compounds display a thermal spin transition and the Light-Induced Excited Spin State Trapping (LIESST) effect at low temperature. For each compound, the thermal spin transition temperature, T1/2, and the relaxation temperature of the photo-induced high-spin state, T(LIESST), have been systematically determined. A decrease in T1/2 induces an increase in T(LIESST). The results are discussed an…

Spin states010405 organic chemistryChemistryRelaxation (NMR)Spin transition010402 general chemistryPhotomagnetism01 natural sciencesMagnetic susceptibilityLIESST0104 chemical sciencesInorganic ChemistryNuclear magnetic resonanceSpin crossoverExcited statePhysical chemistryEuropean Journal of Inorganic Chemistry
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Structural, thermal and photomagnetic properties of spin crossover [Fe(bpp)2]2+ salts bearing [Cr(L)(ox)2]- anions

2009

International audience; This paper is divided into two parts: in the first part, the influence of solvate molecules on the magnetic properties of spin crossover salts of [Fe(bpp)(2)][Cr(L)(ox)(2)]ClO(4) x nS (bpp = 2,6-bis(pyrazol-3yl)pyridine; L = 2,2'-bipyridine (bpy) or 1,10-phenanthroline (phen); ox = oxalate dianion; S = solvent) is analyzed. The second part is devoted to the photomagnetic properties of the previously reported [Fe(bpp)(2)][Cr(L)(ox)(2)](2) family of compounds. The study describes the crystal structure, differential scanning calorimetry (DSC) and magnetic properties of [Fe(bpp)(2)][Cr(bpy)(ox)(2)]ClO(4) x EtOH x 4 H(2)O (1) and [Fe(bpp)(2)][Cr(phen)(ox)(2)]ClO(4) x 1.5 …

education.field_of_study010405 organic chemistryChemistryPopulationCrystal structure[CHIM.MATE]Chemical Sciences/Material chemistry010402 general chemistry01 natural sciencesLIESSTOxalate0104 chemical sciencesInorganic ChemistryCrystallographychemistry.chemical_compoundNuclear magnetic resonanceDifferential scanning calorimetrySpin crossoverPyridineMoleculeeducation
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Photomagnetism of a Series of Dinuclear Iron(II) Complexes

2009

International audience; The photomagnetic properties of a series of [{Fe(NCS)(py-X)}2(bpypz)2] (NCS=thiocyanate, py=pyridine, X=4-Mepy, py, 3-Mepy, 3-Clpy and 3-Brpy, and bpypz=3,5-bis(pyridine-2-yl)pyazolate) binuclear complexes are close to the antiferromagnetic response of [{Fe(NCS)(3,5-dmpy)}3(bpypz)2] (3,5-dmpy=3,5-dimethylpyrazine), which is characterised by two iron(II) metal ions in a high-spin (HS) electronic configuration . This paper describes the photomagnetic properties of a series of binuclear iron(II) complexes belonging to the [{Fe(NCS)(py-X)}2(bpypz)2] family (NCS=thiocyanate; py=pyridine; bpypz=3,5-bis(pyridine-2-yl)pyrazolate; and py-X=4-Mepy (1), py (3), 3-Mepy (4), 3-Cl…

ThiocyanateStereochemistryOrganic ChemistryHydrostatic pressureSpin transitionIron(II)[CHIM.MATE]Chemical Sciences/Material chemistry02 engineering and technologyGeneral ChemistrySpin crossover010402 general chemistry021001 nanoscience & nanotechnologyPhotomagnetism01 natural sciencesCatalysisLIESST0104 chemical scienceschemistry.chemical_compoundCrystallographychemistrySpin crossoverPyridineAntiferromagnetism0210 nano-technologyPhotomagnetismChemistry - A European Journal
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Stimuli responsive hybrid magnets : tuning the photoinduced spin-crossover in Fe(III) complexes inserted into layered magnets

2013

The insertion of a [Fe(sal_2 trien)]^+ complex cation into a 2D oxalate network in the presence of different solvents results in a family of hybrid magnets with coexistence of magnetic ordering and photoinduced spin crossover (LIESST effect) in compounds [Fe^{III}(sal_2 trien)][Mn^{II}Cr^{III}(ox)_3]·CHCl_3 (1·CHCl_{3}) [Fe^{III}(sal_{2} trien)][Mn^{II}Cr^{III}(ox)_{3}]·CHBr_{3} (1·CHBr_{3}) and [Fe^{III}(sal_{2} trien)][Mn^{II}Cr^{III}(ox)_{3}]·CH_{2}Br_{2} (1·CH_{2}Br_{2}). The three compounds crystallize in a 2D honeycomb anionic layer formed by Mn^{II} and Cr^{III} ions linked through oxalate ligands and a layer of [Fe(sal_{2} trien)]^{+} complexes and solvent molecules (CHCl_{3} CHBr_{…

MagnetismInorganic chemistry010402 general chemistry01 natural sciencesBiochemistryCatalysisOxalateLIESSTchemistry.chemical_compoundColloid and Surface ChemistrySpin crossoverFe(III)Mössbauer spectroscopyOrganometallic CompoundsMoleculeMolecular Structure010405 organic chemistryChemistryRelaxation (NMR)Complex cationMagnetismHybrid magnetsGeneral ChemistryOxalate network[CHIM.MATE]Chemical Sciences/Material chemistryPhotochemical Processes0104 chemical sciencesCrystallographyMagnetic FieldsFerromagnetismddc:540Solvents
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CCDC 929206: Experimental Crystal Structure Determination

2014

Related Article: Miguel Clemente-León, Eugenio Coronado, Maurici López-Jordà, João C. Waerenborgh, Cédric Desplanches, Hongfeng Wang, Jean-François Létard, Andreas Hauser , and Antoine Tissot|2013|J.Am.Chem.Soc.|135|8655|doi:10.1021/ja402674x

Space GroupCrystallographyCrystal Systemcatena-(bis((22'-(25811-Tetra-azadodeca-111-diene-112-diyl)diphenolato)-iron) hexakis(mu~2~-oxalato)-tetra-chromium chloroform solvate)Crystal StructureCell ParametersExperimental 3D Coordinates
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CCDC 929201: Experimental Crystal Structure Determination

2014

Related Article: Miguel Clemente-León, Eugenio Coronado, Maurici López-Jordà, João C. Waerenborgh, Cédric Desplanches, Hongfeng Wang, Jean-François Létard, Andreas Hauser , and Antoine Tissot|2013|J.Am.Chem.Soc.|135|8655|doi:10.1021/ja402674x

Space GroupCrystallographyCrystal Systemcatena-(bis((22'-(25811-Tetra-azadodeca-111-diene-112-diyl)diphenolato)-iron(iii)) hexakis(mu2-oxalato)-di-chromium(iii)-di-manganese(ii) dibromomethane solvate)Crystal StructureCell ParametersExperimental 3D Coordinates
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CCDC 929203: Experimental Crystal Structure Determination

2014

Related Article: Miguel Clemente-León, Eugenio Coronado, Maurici López-Jordà, João C. Waerenborgh, Cédric Desplanches, Hongfeng Wang, Jean-François Létard, Andreas Hauser , and Antoine Tissot|2013|J.Am.Chem.Soc.|135|8655|doi:10.1021/ja402674x

Space GroupCrystallographyCrystal SystemCrystal StructureCell Parameterscatena-(bis((22'-(25811-Tetra-azadodeca-111-diene-112-diyl)diphenolato)-iron(iii)) hexakis(mu2-oxalato)-di-chromium(iii)-di-manganese(ii) bromoform solvate)Experimental 3D Coordinates
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CCDC 929204: Experimental Crystal Structure Determination

2014

Related Article: Miguel Clemente-León, Eugenio Coronado, Maurici López-Jordà, João C. Waerenborgh, Cédric Desplanches, Hongfeng Wang, Jean-François Létard, Andreas Hauser , and Antoine Tissot|2013|J.Am.Chem.Soc.|135|8655|doi:10.1021/ja402674x

Space GroupCrystallographyCrystal SystemCrystal StructureCell Parameterscatena-(bis((22'-(25811-Tetra-azadodeca-111-diene-112-diyl)diphenolato)-iron) hexakis(mu~2~-oxalato)-tetra-chromium bromoform solvate)Experimental 3D Coordinates
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CCDC 929205: Experimental Crystal Structure Determination

2014

Related Article: Miguel Clemente-León, Eugenio Coronado, Maurici López-Jordà, João C. Waerenborgh, Cédric Desplanches, Hongfeng Wang, Jean-François Létard, Andreas Hauser , and Antoine Tissot|2013|J.Am.Chem.Soc.|135|8655|doi:10.1021/ja402674x

Space GroupCrystallographyCrystal Systemcatena-(bis((22'-(25811-Tetra-azadodeca-111-diene-112-diyl)diphenolato)-iron) hexakis(mu~2~-oxalato)-tetra-chromium chloroform solvate)Crystal StructureCell ParametersExperimental 3D Coordinates
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CCDC 929202: Experimental Crystal Structure Determination

2014

Related Article: Miguel Clemente-León, Eugenio Coronado, Maurici López-Jordà, João C. Waerenborgh, Cédric Desplanches, Hongfeng Wang, Jean-François Létard, Andreas Hauser , and Antoine Tissot|2013|J.Am.Chem.Soc.|135|8655|doi:10.1021/ja402674x

Space GroupCrystallographycatena-(bis((22'-(25811-Tetra-azadodeca-111-diene-112-diyl)diphenolato)-iron) hexakis(mu~2~-oxalato)-tetra-chromium dibromomethane solvate)Crystal SystemCrystal StructureCell ParametersExperimental 3D Coordinates
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CCDC 929207: Experimental Crystal Structure Determination

2014

Related Article: Miguel Clemente-León, Eugenio Coronado, Maurici López-Jordà, João C. Waerenborgh, Cédric Desplanches, Hongfeng Wang, Jean-François Létard, Andreas Hauser , and Antoine Tissot|2013|J.Am.Chem.Soc.|135|8655|doi:10.1021/ja402674x

Space GroupCrystallographyCrystal SystemCrystal StructureCell Parameterscatena-(bis((22'-(25811-Tetraazadodeca-111-diene-112-diyl)diphenolato)-iron) hexakis(mu~2~-oxalato)-tetra-chromium dichloromethane solvate)Experimental 3D Coordinates
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CCDC 929208: Experimental Crystal Structure Determination

2014

Related Article: Miguel Clemente-León, Eugenio Coronado, Maurici López-Jordà, João C. Waerenborgh, Cédric Desplanches, Hongfeng Wang, Jean-François Létard, Andreas Hauser , and Antoine Tissot|2013|J.Am.Chem.Soc.|135|8655|doi:10.1021/ja402674x

Space GroupCrystallographycatena-(bis((22'-(25811-Tetra-azadodeca-111-diene-112-diyl)diphenolato)-gallium) hexakis(mu2-oxalato)-tetra-chromium dichloromethane solvate)Crystal SystemCrystal StructureCell ParametersExperimental 3D Coordinates
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