Search results for "Metallic"

showing 10 items of 813 documents

Magnetic properties of hybrid molecular materials based on oxalato complexes

2003

Abstract The use of [MIII(ox)3]3− (MIII=Ru, Rh) complexes as building blocks for hybrid molecular materials is highlighted with two different synthetic approaches. The first strategy is the combination of organic donors and [RuIII(ox)3]3− units, resulting in the radical salt of formula TTF3[Ru(ox)3]·0.5EtOH·4H2O (1) which shows coexistence of paramagnetism and semiconducting properties. The second approach is the synthesis of extended 2D bimetallic oxalato-bridged networks of general formula [FeCp2 *][MIIRh(ox)3] in which paramagnetic layers of decamethylferricinium cations are alternated with paramagnetic bimetallic layers.

Inorganic Chemistrychemistry.chemical_classificationParamagnetismchemistry.chemical_compoundChemistryPolymer chemistryInorganic chemistryMaterials ChemistrySalt (chemistry)Physical and Theoretical ChemistryMolecular materialsBimetallic stripTetrathiafulvalene
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Design of ordered bimetallic complexes, Part 2:Trans-1,2-cyclohexanediaminetetraacetate bimetallates

1987

Knowledge of the kinetic and thermodynamic behaviour of aqueous solutions containing two divalent cations andtrans-1,2-cyclohexanediaminetetraacetate has been used to design synthetic pathways to ordered bimetallic complexes

Inorganic Chemistrychemistry.chemical_classificationchemistry.chemical_compoundAqueous solutionchemistryComputational chemistryInorganic chemistryMaterials ChemistryMetals and AlloysBimetallic stripOrganometallic chemistryDivalentCatalysisTransition Metal Chemistry
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A “Cation-less” Oxalate-Based Ferromagnet Formed by Neutral Bimetallic Layers:  {[Co(H2O)2]3[Cr(ox)3]2(18-crown-6)2}∞ (ox = Oxalate Dianion; 18-crown…

2007

Neutral layers of the bimetallic oxalate complex {[Co(H2O)2]3[Cr(ox)3]2}∞ are formed in the presence of a crown ether and stabilized by hydrogen bonding. The resulting soluble ferromagnet orders at Tc = 7.4 K.

Inorganic Chemistrychemistry.chemical_classificationchemistry.chemical_compoundCrystallographychemistryFerromagnetismHydrogen bond18-Crown-6Physical and Theoretical ChemistryBimetallic stripCrown etherOxalateInorganic Chemistry
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Complexes of organometallic compounds. XXXVIII. Anion Exchange Studies on the Trimethyllead (IV) Thiocyanate aqueous complex system

1974

The distribution of Me3PbIV between the anion exchange resin Dowex 1 X 8 and aqueous solutions of NaSCN and KSCN was investigated. In the aqueous phase, up to 3 M thiocyanate concentration, only the formation of the neutral species Me3PbNCS was detected and the related stability constant evaluated. Evidence of formation into the resin phase of the anionic Me3Pb(NCS) species was obtained.

Inorganic Chemistrychemistry.chemical_compoundAqueous solutionThiocyanatechemistryIon exchangeStability constants of complexesPhase (matter)Inorganic chemistryAqueous two-phase systemIon-exchange resinGroup 2 organometallic chemistryZeitschrift f�r anorganische und allgemeine Chemie
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Lactate complexes of molybdenum(VI)

1983

Spectrophotometric and cryoscopic studies of the molybdenum(VI)-lactic acid (C3O3H6) system show the existence of three different oxoanion complexes in aqueous solution which have been isolated as [Co(en)3]3+ salts. These are one molybdodilactate {[MoO2(C3O3H42]2−} and two dinuclear 1/1 species: [Mo2O5(C3O3H4)2(H2O)2]2− and [Mo2O3(OH)3-(C3O3H4)2]−. The pH of the medium is the main variable, controlling the formation equilibria which are similar to those previously described for other α-hydroxy-acid ligands.

Inorganic Chemistrychemistry.chemical_compoundAqueous solutionchemistryMolybdenumInorganic chemistryPolymer chemistryMaterials ChemistryMetals and Alloyschemistry.chemical_elementCarboxylateOrganometallic chemistryCatalysisTransition Metal Chemistry
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Oxalate-Based Soluble 2D Magnets: The Series [K(18-crown-6)]3[MII3(H2O)4{MIII(ox)3}3] (MIII = Cr, Fe; MII = Mn, Fe, Ni, Co, Cu; ox = C2O42−; 18-crown…

2008

The synthesis and magnetic properties of the oxalate-based molecular soluble magnets with general formula [K(18-crown-6)] 3[M (II) 3(H 2O) 4{M (III)(ox) 3} 3] (M (III) = Cr, Fe; M (II) = Mn, Fe, Ni, Co, Cu; ox = C 2O 4 (2-)) are here described. All the reported compounds are isostructural and built up by 2D bimetallic networks formed by alternating M (III) and M (II) ions connected through oxalate anions. Whereas the Cr (III)M (II) derivatives behave as ferromagnets with critical temperatures up to 8 K, the Fe (III)M (II) present ferri- or weak ferromagnetic ordering up to 26 K.

Inorganic Chemistrychemistry.chemical_compoundCrystallographyFerromagnetismChemistryMagnet18-Crown-6MetallurgyPhysical and Theoretical ChemistryIsostructuralBimetallic stripOxalateIonInorganic Chemistry
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2D and 3D bimetallic oxalate-based ferromagnets prepared by insertion of different FeIII spin crossover complexes

2010

The syntheses, structures and magnetic properties of the compounds of formula [Fe(III)(5-NO(2)sal(2)-trien)][Mn(II)Cr(III)(ox)(3)]·CH(3)NO(2).0.5H(2)O (1) and [Fe(III)(5-CH(3)Osal(2)-trien)][Mn(II)Cr(III)(ox)(3)] (2) are reported. The structure of 1, that crystallizes in the P2(1) chiral space group, presents a 2D honeycomb anionic layer formed by Mn(II) and Cr(III) ions linked through oxalate ligands and a cationic layer of [Fe(III)(5-NO(2)sal(2)-trien)](+) complexes intercalated between the 2D oxalate network. The structure of 2, that crystallizes in the Pna2(1) acentric space group, presents a 3D achiral anionic network formed by Mn(II) and Cr(III) ions linked through oxalate ligands wit…

Inorganic Chemistrychemistry.chemical_compoundCrystallographyFerromagnetismChemistrySpin crossoverInorganic chemistryAcentric factorCationic polymerizationBimetallic stripOxalateIonDalton Transactions
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Heptacoordinated MnIIin oxalate-based bimetallic 2D magnets: synthesis and characterisation of [Mn(L)6][Mn(CH3OH)MIII(ox)3]2(MIII= Cr, Rh; ox = oxala…

2006

Oxalate-based magnets have been known with several different crystallographic structures, from 1D to 3D, but with all of them based in metal ions with octahedral coordination. In this article we report a new bidimensional oxalate-bridged bimetallic magnet where the divalent metal appears heptacoordinated, which has strong effects in the structure and properties of this materials.

Inorganic Chemistrychemistry.chemical_compoundCrystallographyMaterials scienceOctahedronchemistryMagnetMetal ions in aqueous solutionNanotechnologyBimetallic stripOxalateDivalent metalDalton Trans.
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Reactivity of bimetallic dibridged complexes Cp2Ta(H)(μ-H)(μ-PMe2)M′(CO)4 (M′ = Cr, Mo, W) toward two-electron donor ligands L (L = PR3, Me2P(CH2)nPM…

1998

Abstract The reaction of the heterobimetallic phosphido- and hydrido-bridged complexes Cp 2 TaH(μ-H)(μ-PMe 2 )M′(CO) 4 (M′ = Cr, Mo, W) ( 1–3 ) with phosphines (L = PPh 2 Me, PMe 2 Ph) or diphosphines (L = dmpm, dmpe) leads to Cp 2 Ta(H) 2 (μ-PMe 2 )M′(CO) 4 (L) ( 1a, 1b, c, d-3b, c, d ) with L regiospecifically coordinated to M′. Except for L = PPh 2 Me, the reaction is stereospecific, since a cis arrangement (with respect to the PMe 2 bridge) on the M′ site is obtained. The new compounds Cp 2 Ta(H) 2 (μ-PMe 2 )M′ (CO) 4 (Me 2 P(CH 2 ) 2 PMe 2 ) (M′ = Mo, W) are able to bind [Cr(CO) 5 ] fragments affording the linear trinuclear chain compounds Cp 2 Ta(H) 2 (μ-PMe 2 )M′(CO) 4 (Me 2 P(CH 5 )…

Inorganic Chemistrychemistry.chemical_compoundCrystallographyStereospecificityChemistryDiphosphinesMaterials ChemistryInfrared spectroscopyReactivity (chemistry)Electron donorPhysical and Theoretical ChemistryBimetallic stripPolyhedron
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[TiPHOS(Rh)]+:  A Fortuitous Coordination Mode and an Effective Hydrosilylation Bimetallic Catalyst

2005

The reaction of the titanocene diphosphine {(η5-C5H5)[η5-C5Me3-1,2-(PPh2)2]TiCl2} (TiPHOS; 1) with [Rh(COD)2](OTf) led to the new early−late heterobimetallic complex [(TiPHOS)Rh(COD)](OTf) (2), who...

Inorganic Chemistrychemistry.chemical_compoundchemistryHydrosilylationOrganic ChemistryPolymer chemistryOrganic chemistryPhysical and Theoretical ChemistryBimetallic stripCatalysisOrganometallics
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