Search results for "coordination complexes"

showing 10 items of 164 documents

Coordination Polymers Containing Manganese(II)-Azido Layers Connected by Dipyridyl-tetrazine and 4,4′-Azobis(pyridine) Linkers

2013

Two new polynuclear manganese(II) complexes [Mn(dptz)(N(3))(2)](n) (1) and [Mn(azpy)(N(3))(2)](n) (2) (where dptz = dipyridyl-tetrazine and azpy = 4,4'-azobis(pyridine)) have been synthesized by self-assembly of the ligand azide, together with dptz and azpy as secondary spacers. The compounds are characterized by single-crystal X-ray diffraction analyses and variable-temperature magnetic measurements. The structural analyses reveal that in complex 1, which is the first reported Mn(II) complex with the ligand dptz, two μ(1,3) bridging azides connect neighboring manganese ions in a zigzag manner to generate a neutral two-dimensional (2D) sheet which is further connected by the dptz ligands to…

Models MolecularAzidesManganeseMolecular StructurePolymersPyridinesStereochemistryLigandTetrazoleschemistry.chemical_elementManganeseMagnetic susceptibilityInorganic ChemistryTetrazinechemistry.chemical_compoundCrystallographychemistryCoordination ComplexesPyridineAntiferromagnetismMoleculeAzidePhysical and Theoretical ChemistryAzo CompoundsInorganic Chemistry
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Ruthenium(II) and platinum(II) homo- and heterobimetallic complexes: Synthesis, crystal structures, theoretical calculations and biological studies

2019

Four Ru-Pd heterobimetallic complexes, each one in two different coordination modes (NNSS and NS) having metals connected by a binucleating dialkyldithiooxamidate [N(R)SC-CS(R)N] [R = methyl, ethyl, n-butyl and isopropyl], were prepared by reacting the monochelate [(trinpropyl-phosphine)ClPd(HR2C2N2S2κ-S,S-Pd)] with [(η6-p-cymene)RuCl2]2. Furthermore, two palladium homobimetallic complexes having two (trinpropyl-phosphine)ClPd moieties joined by a diethyldithiooxamidate in both κ-N,S Pd, κ-N',S' Pd' and κ-N,N' Pd, κ-S,S' Pd' coordination modes were synthesized. For both kinds of complexes, homo- and heterobimetallic, at room temperature and in chloroform solution, the NNSS coordination mode…

Models MolecularCell Survivalchemistry.chemical_elementAntineoplastic AgentsCrystal structure010402 general chemistry01 natural sciencesRutheniumlaw.inventionInorganic Chemistrychemistry.chemical_compoundlawCoordination ComplexesCell Line TumorAlloysMoleculeHumansCrystallizationChloroformBiological studiesLeukemiaMolecular Structure010405 organic chemistry0104 chemical sciencesRutheniumCrystallographychemistryCrystallizationIsopropylPalladiumPalladium
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A New Heterogeneous Catalyst Obtained via Supramolecular Decoration of Graphene with a Pd2+ Azamacrocyclic Complex

2019

A new G-(H2L)-Pd heterogeneous catalyst has been prepared via a self-assembly process consisting in the spontaneous adsorption, in water at room temperature, of a macrocyclic H2L ligand on graphene (G) (G + H2L = G-(H2L)), followed by decoration of the macrocycle with Pd2+ ions (G-(H2L) + Pd2+ = G-(H2L)-Pd) under the same mild conditions. This supramolecular approach is a sustainable (green) procedure that preserves the special characteristics of graphene and furnishes an efficient catalyst for the Cu-free Sonogashira cross coupling reaction between iodobenzene and phenylacetylene. Indeed, G-(H2L)-Pd shows an excellent conversion (90%) of reactants into diphenylacetylene under mild conditio…

Models MolecularChemical PhenomenaIodobenzeneMolecular ConformationPharmaceutical ScienceSonogashira couplingLigands010402 general chemistryHeterogeneous catalysiscross coupling01 natural sciencesArticleCoupling reactionAnalytical Chemistrylaw.inventionCatalysislcsh:QD241-441chemistry.chemical_compoundlcsh:Organic chemistryCoordination ComplexeslawDrug DiscoveryPolymer chemistryPhysical and Theoretical ChemistryDiphenylacetyleneMolecular Structurecatalysis010405 organic chemistryGrapheneSpectrum AnalysisOrganic ChemistrySonogashirapalladium catalystHydrogen-Ion Concentrationsupramolecular interactions0104 chemical sciencesSolutionsazamacrocycleschemistryPhenylacetyleneChemistry (miscellaneous)surface adsorptionMolecular MedicineGraphitecatalysis palladium catalyst; Sonogashira graphenePalladiumMolecules
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A new enneanuclear nickel(II) cluster with a rectangular face-centered trigonal prism structure and cluster glass behavior.

2011

An enneanuclear nickel(II) complex with a rectangular face-centered trigonal prism structure bridged by μ(2)-pyrazolate, μ(6)-CO(3)(2-) and μ(3)-OH(-) groups was synthesized. It displays cluster glass-like magnetic behavior assigned to the single molecule magnet properties of {Ni(9)} clusters and weak intercluster interaction.

Models MolecularChemistryMetals and AlloysStructure (category theory)chemistry.chemical_elementGeneral ChemistryCatalysisSurfaces Coatings and FilmsElectronic Optical and Magnetic MaterialsCrystallographyNickelTrigonal prismCoordination ComplexesNickelFace (geometry)Materials ChemistryCeramics and CompositesCluster (physics)MagnetsPyrazolesSingle-molecule magnetChemical communications (Cambridge, England)
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DNA binding and antiproliferative activity toward human carcinoma cells of copper(ii) and zinc(ii) complexes of a 2,5-diphenyl[1,3,4]oxadiazole deriv…

2012

The interaction of calf thymus DNA with [CuL(ClO(4))]ClO(4)·H(2)O (1) and [ZnLBr]Br·H(2)O (2) (L = 9,12,15,18,27,28-hexaaza-29-oxatetracyclo[24.2.1.0(2,7).0(20,25)]enneicosa-2,4,6,20,22,24,26,28(1)-octaene) dicationic complexes in aqueous solution at neutral pH, was investigated by variable-temperature UV-vis absorption, circular dichroism and fluorescence spectroscopy. The values of the DNA-binding constants of these complexes, determined by competitive binding spectrofluorimetric titrations of ethidium bromide (EB)-DNA solutions, are (6.7 ± 0.5) × 10(6) M(-1) for CuL(2+) and (4.7 ± 0.5) × 10(5) M(-1) for ZnL(2+). These data together with a through analysis of the spectroscopic behaviour c…

Models MolecularCircular dichroismDNA binding antiproliferative activity 25-diphenyl[134]oxadiazole derivativeStereochemistryCell SurvivalOxadiazoleAntineoplastic AgentsBreast NeoplasmsNucleic Acid DenaturationFluorescence spectroscopyInorganic Chemistrychemistry.chemical_compoundCoordination ComplexesCell Line TumorHumansOxazolesAqueous solutionDNAIn vitroZincchemistrySettore CHIM/03 - Chimica Generale E InorganicaTitrationFemaleEthidium bromideDNACopper
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Two copper complexes from two novel naphthalene-sulfonyl-triazole ligands: different nuclearity and different DNA binding and cleavage capabilities.

2013

[EN] Two novel naphthalene-sulfonyl-triazole ligands, 5-amino-N1-(naphthalen-3-ylsulfony1)-1,2,4-triazole (anstrz) and 3,5-diamino-N1-(naphthalen-3-ylsulfony1)-1,2,4-triazole (danstrz), purposely designed to interact with DNA, have been prepared for the first time and then fully characterized by H-1, C-13 NMR and IR spectroscopy, mass spectrometry and elemental analysis. The crystal structures of two copper complexes of these derivatives, i.e. [Cu(anstrz)(4)(NO3)(2)]center dot 4CH(3)OH (1), mononuclear, and [Cu(danstrz)(mu-OAc)(2)](2)center dot 2(danstrz) (OAc = acetato) (2), dinuclear, have been determined by single-crystal X-ray diffraction. In both cases the ligand coordinates in a monod…

Models MolecularDenticity124-Triazole ligandsStereochemistryTriazolePaddle wheel type copper acetate compoundCrystal structureNaphthalenesCrystallography X-RayLigandsBiochemistryInorganic Chemistrychemistry.chemical_compoundX-Ray DiffractionCoordination ComplexesBIOQUIMICA Y BIOLOGIA MOLECULARSulfonesBinding siteDNA CleavageCu(II)-triazole complexesBond cleavageNuclease activitySulfonylchemistry.chemical_classificationSulfonamidesBinding SitesDeoxyribonucleasesChemistryLigandDNATriazolesBinding constantDNA interactionCrystallographyCopperJournal of inorganic biochemistry
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Antiferromagnetic porous metal-organic framework containing mixed-valence [Mn(II)4Mn(III)2(μ4-O)2]10+ units with catecholase activity and selective g…

2012

A multifunctional porous metal organic framework based on mixed-valence hexa-nuclear [Mn(III)(2)Mn(II)(4)O(2)(pyz)(2)(C(6)H(5)CH(2)COO)(10)] (pyz = pyrazine) units has been synthesized. The complex has been characterized by elemental analysis, IR spectroscopy, single-crystal X-ray diffraction analysis, and variable-temperature magnetic measurements. The structural analysis reveals that the bidentate pyz molecules connect each [Mn(6)] unit to its four [Mn(6)] neighbors through the peripheral Mn(II) centers, giving rise to a three-dimensional (3D) distorted diamond-like porous framework. Variable-temperature (2-300 K) magnetic susceptibility measurements show the presence of dominant antiferr…

Models MolecularDenticityAcetonitrilesPyrazineStereochemistryCatecholsInfrared spectroscopyCrystallography X-RayInorganic Chemistrychemistry.chemical_compoundCoordination ComplexesAntiferromagnetismMoleculePhysical and Theoretical ChemistryAcetonitrileManganeseValence (chemistry)Molecular StructureChemistryHydrolysisMagnetic PhenomenaTemperatureCarbon DioxideMagnetic susceptibilityCrystallographyKineticsPyrazinesAdsorptionGasesOxidation-ReductionPorosityInorganic chemistry
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Phosphatase-like Activity of Tetranuclear Iron(III) and Zinc(II) Complexes

2018

Three new tetranuclear iron(III) and zinc(II) complexes, [Fe4(cpdp)2(phth)2(OH)2]·8H2O (1), [Fe4(cpdp)2(terephth)2(OH)2] (2), and [Zn4(Hcpdp)2(suc)]Br2·12H2O (3), have been synthesized as models for the active site of phosphoester hydrolases by utilizing a polydentate ligand, N, N'-bis[2-carboxybenzomethyl]- N, N'-bis[2-pyridylmethyl]-1,3-diaminopropan-2-ol (H3cpdp) in combination with exogeneous phthalate (phth), terephthalate (terephth), and succinate (suc). Single crystal X-ray analyses reveal that the metallic core of complex 1 consists of four distorted octahedral iron(III) ions with average intraligand Fe---Fe separation of 3.656(2) A, while the structure 3 represents a tetranuclear m…

Models MolecularDenticityIronDimerchemistry.chemical_elementZincCrystallography X-Ray010402 general chemistry01 natural sciencesMass SpectrometryInorganic Chemistrychemistry.chemical_compoundDrug StabilityCoordination ComplexesCatalytic DomainMoleculePhysical and Theoretical Chemistrybiology010405 organic chemistryLigandChemistryActive siteHydrogen-Ion ConcentrationPhosphoric Monoester Hydrolases0104 chemical sciencesSolutionsZincCrystallographyTrigonal bipyramidal molecular geometryOctahedronbiology.proteinQuantum TheoryInorganic Chemistry
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Coordination Diversity in Mono- and Oligonuclear Copper(II) Complexes of Pyridine-2-Hydroxamic and Pyridine-2,6-Dihydroxamic Acids

2013

Solution and solid state studies on Cu(II) complexes of pyridine-2-hydroxamic acid (HPicHA) and pyridine-2,6-dihydroxamic acid (H2PyDHA) were carried out. The use of methanol/water solvent allowed us to investigate the Cu(II)-HPicHA equilibria under homogeneous conditions between pH 1 and 11. In agreement with ESI-MS indication, the potentiometric data fitted very well with the model usually reported for copper(II) complexes of α-aminohydroxamate complexes ([CuL](+), [Cu5(LH-1)4](2+), [CuL2], [CuL2H-1](-)), however with much higher stability of the 12-MC-4 species. A series of copper(II) complexes has been isolated in the solid state and characterized by a variety of spectroscopic methods, …

Models MolecularDenticityPyridinesPotentiometric titrationInorganic chemistrychemistry.chemical_elementCrystallography X-RayHydroxamic AcidsMedicinal chemistryMagnetic susceptibilityCopperInorganic ChemistrySolventchemistry.chemical_compoundchemistryCoordination ComplexesPyridineChelationMethanolProtonsPhysical and Theoretical Chemistryta116CopperInorganic Chemistry
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Electrical Conductivity and Luminescence in Coordination Polymers Based on Copper(I)-Halides and Sulfur-Pyrimidine Ligands

2011

The solvothermal reactions between pyrimidinedisulfide (pym(2)S(2)) and CuI or CuBr(2) in CH(2)Cl(2):CH(3)CN lead to the formation of [Cu(11)I(7)(pymS)(4)](n) (pymSH = pyrimidine-2(1H)-thione) (1) and the dimer [Cu(II)(μ-Br)(Br)L](2) (L = 2-(pyrimidin-2-ylamino)-1,3-thiazole-4-carbaldehyde) (2). In the later reaction, there is an in situ S-S, S-C(sp(2)), and C(sp(2))-N multiple bond cleavage of the pyrimidinedisulfide resulting in the formation of 2-(pyrimidin-2-ylamino)-1,3-thiazole-4-carbaldehyde. Interestingly, similar reactions carried out just with a change in the solvent (H(2)O:CH(3)CN instead of CH(2)Cl(2):CH(3)CN) give rise to the formation of coordination polymers with rather diffe…

Models MolecularLuminescencePyrimidinePolymersDimerInorganic chemistryElectric ConductivityHalidechemistry.chemical_elementSulfidesCrystallography X-RayLigandsSulfurCopperInorganic ChemistrySolventchemistry.chemical_compoundPyrimidineschemistryCoordination ComplexesPolymer chemistryPhysical and Theoretical ChemistryLuminescenceCopperBond cleavageInorganic Chemistry
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