Search results for "ligands"

showing 10 items of 721 documents

Inverted molecular cups: 1-D and 2-D Ag(I) coordination polymers from resorcinarene bis-thiacrowns

2016

Resorcinarene bis-thiacrown hosts 1–3 were prepared and crystallized with silver trifluoroacetate yielding one and two dimensional Ag coordination polymers. The complexation of silver in exo-cavity fashion folds the thiacrown bridges inwards transforming the resorcinarene hosts into inverted molecular cups. The silver cations were coordinated to the resorcinarene ligands and trifluoroacetate anions, which act as monodentate or bidendate bridging ligands between the metal ions. Argentophilic Ag⋯Ag (2.93–3.38 A) interactions supported by two bridging carboxylate anions were found in two of the structures, whereas longer Ag⋯Ag distances were observed if only one anion connected the silver cati…

DenticityMetal ions in aqueous solutionInorganic chemistry010402 general chemistry01 natural sciencesMetalchemistry.chemical_compoundresorcinarenesGeneral Materials ScienceCarboxylateta116Alkylchemistry.chemical_classification010405 organic chemistryGeneral ChemistryPolymerResorcinareneCondensed Matter Physics0104 chemical sciencesSolventCrystallographycoordination polymerschemistryvisual_artvisual_art.visual_art_mediummacrocyclic ligandsCrystEngComm
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Field-Induced Slow Magnetic Relaxation in a Mononuclear Manganese(III)-Porphyrin Complex

2015

We report on a novel manganese(III)-porphyrin complex with the formula [Mn(III) (TPP)(3,5-Me2 pyNO)2 ]ClO4 ⋅CH3 CN (2; 3,5-Me2 pyNO=3,5-dimethylpyridine N-oxide, H2 TPP=5,10,15,20-tetraphenylporphyrin), in which the Mn(III) ion is six-coordinate with two monodentate 3,5-Me2 pyNO molecules and a tetradentate TPP ligand to build a tetragonally elongated octahedral geometry. The environment in 2 is responsible for the large and negative axial zero-field splitting (D=-3.8 cm(-1) ), low rhombicity (E/|D|=0.04) of the high-spin Mn(III) ion, and, ultimately, for the observation of slow magnetic-relaxation effects (Ea =15.5 cm(-1) at H=1000 G) in this rare example of a manganese-based single-ion ma…

DenticityPorphyrinsMetalloporphyrinsPyridineschemistry.chemical_elementManganese010402 general chemistryCrystallography X-RayLigands01 natural sciencesCatalysisIonlaw.inventionchemistry.chemical_compoundlawOctahedral molecular geometryMoleculeElectron paramagnetic resonanceComputingMilieux_MISCELLANEOUS[PHYS]Physics [physics]Manganese010405 organic chemistryLigandOrganic ChemistryElectron Spin Resonance SpectroscopyTemperatureGeneral ChemistryPorphyrin0104 chemical sciencesCrystallographychemistryMagnets
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Preparation and structural characterization of Ph3Sn(IV)+ complexes with pyridinecarboxylic acids or hydroxypyridene, -pyrimidine and –quinoline.

2006

A number of [Ph3Sn(IV)](+) complexes formed with ligands containing -OH (-C=O), or -COOH group(s) and aromatic IN) donor atom have been prepared. The binding sites of the ligands were identified by FT-IR spectroscopic measurements. In the complexes containing hydroxy and carboxylate functions, the carboxylato group is coordinated to the organotin(IV) centres in monodentate or bridging bidentate manner. It was also found that in the hydroxypyridine and -pyrimidine complexes the [Ph3Sn(IV)]+ moiety in most cases reacts with the phenolic form of the ligands. The rationalisation of the experimental Sn-119 Mossbauer nuclear quadrupole splittings, vertical bar Delta(exp)vertical bar - according t…

DenticityPyrimidineStereochemistrytriphenyltin(IV)BiochemistryMedicinal chemistryInorganic ChemistryMossbauerchemistry.chemical_compound2-HYDROXYPYRIDINEPyridineMaterials ChemistryMoietyCarboxylatePhysical and Theoretical ChemistryCOORDINATIONDERIVATIVESOrganic ChemistryQuinolineX-ray diffraction DICARBOXYLIC-ACIDShydroxypyridine -pyrimidine and pyridinecarboxylato complexeFT-IRTrigonal bipyramidal molecular geometryOctahedronchemistryLIGANDS
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Biomimetic Mn-catalases based on dimeric manganese complexes in mesoporous silica for potential antioxidant agent

2015

Two new structural and functional models of the Mn-catalase with formula [{Mn(III)(bpy)(H2O)}(μ-2-MeOC6H4CO2)2(μ-O){Mn(III)(bpy)(X)}]X, where X = NO3 (1) and ClO4 (2) and bpy = 2,2'-bipyridine, were synthesized and characterized by X-ray diffraction. In both cases, a water molecule and an X ion occupy the monodentate positions. The magnetic properties of these compounds reveal a weak antiferromagnetic behavior (2J = -2.2 cm(-1) for 1 and -0.7 cm(-1) for 2, using the spin Hamiltonian H = -2J S1·S2) and negative zero-field splitting parameter DMn (-4.6 cm(-1) and -3.0 cm(-1) for 1 and 2, respectively). This fact, together with the nearly orthogonal orientation of the Jahn-Teller axes of the M…

DenticitySilicon dioxideInorganic chemistrychemistry.chemical_elementManganeseCrystallography X-Ray010402 general chemistryLigands01 natural sciencesAntioxidantsCoordination complexBioinorganic chemistryInorganic ChemistryBipyridinechemistry.chemical_compoundBiomimeticsMoleculeManganèsPhysical and Theoretical ChemistryMaterialsComputingMilieux_MISCELLANEOUSchemistry.chemical_classificationManganese010405 organic chemistryPhotoelectron SpectroscopyMesoporous silicaQuímica bioinorgànicaCatalaseSilicon Dioxide0104 chemical sciences[CHIM.THEO]Chemical Sciences/Theoretical and/or physical chemistryCrystallographyLligandschemistryHybrid materialDimerization
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Polypyridyl-functionalizated alkynyl gold(i) metallaligands supported by tri- and tetradentate phosphanes

2017

A series of alkynyl gold(I) tri and tetratopic metallaligands of the type [Au3(CuC-R)3(μ3-triphosphane)] (R = 2,2'-bipyridin-5-yl or C10H7N2, 2,2':6',2''-terpyridin-4-yl or C15H10N3; triphosphane = 1,1,1-tris(diphenylphosphanyl) ethane or triphos, 1,3,5-tris(diphenylphosphanyl)benzene or triphosph) and [Au4(CuC-R)4 (μ4-tetraphosphane)] (R = C10H7N2, C15H10N3; tetraphosphane = tetrakis(diphenylphosphanylmethyl)methane or tetraphos, 1,2,3,5-tetrakis(diphenylphosphanyl)benzene or tpbz, tetrakis(diphenylphosphaneylmethyl)-1,2- ethylenediamine or dppeda) were obtained in moderate to good yields. All complexes could be prepared by a Q4 reaction between the alkynyl gold(I) polymeric species [Au(Cu…

DenticityStereochemistryOrCrystal structureLigands010402 general chemistry01 natural sciencesMedicinal chemistryInorganic Chemistrychemistry.chemical_compoundcoordination complexesta116kemiallinen synteesiligands010405 organic chemistryChemistryLigandAromaticitykompleksiyhdisteetliganditNuclear magnetic resonance spectroscopyTriphos0104 chemical sciencesLligandsTriphosphaneCompostos d'orIntramolecular forceGoldGold compoundschemical synthesisDalton Transactions
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Synthesis, Coordination to Rh(I), and Hydroformylation Catalysis of New β-Aminophosphines Bearing a Dangling Nitrogen Group:  An Unusual Inversion of…

2002

Variants of the beta-aminophosphine L(1) [Ph(2)PCH(2)CH(Ph)NHPh] containing additional nitrogen donor functions have been prepared. These functions are branched off the C atom adjacent to the P atom, or the P atom itself. Ligand [Ph(2)PCH(o-C(6)H(4)NMe(2))CH(Ph)NHPh] has been obtained as a mixture of two diastereomers L(3A) and L(3B) by lithiation of L(2) [Ph(2)PCH(2)(o-C(6)H(4)NMe(2))] with n-BuLi followed by PhCH=NPh addition and hydrolysis. The diastereomers have been separated by fractional crystallization from ethanol. Ligand Et(2)NCH(2)P(Ph)CH(2)CH(Ph)NHPh has been obtained as a mixture of two diastereomers L(5A) and L(5B)(starting with P-Ph reductive cleavage of L(1) by lithium and s…

DenticityStereochemistrychemistry.chemical_elementLigands010402 general chemistry01 natural sciencesMedicinal chemistryCatalysisRhodiumInorganic Chemistrychemistry.chemical_compound[CHIM.COOR]Chemical Sciences/Coordination chemistryPhysical and Theoretical ChemistryDiethylamine[CHIM.ORGA]Chemical Sciences/Organic chemistry010405 organic chemistryLigandChemistryDiastereomer[CHIM.CATA]Chemical Sciences/CatalysisOxidative addition0104 chemical sciencesMetalsMixturesHydroformylationMolecular structureHydroformylationInorganic Chemistry
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Direct arylation of heterocycles: the performances of ferrocene-based polyphosphane ligands in palladium-catalyzed C-H bond activation

2010

International audience; The palladium-catalyzed direct arylation of alkylated- furan, thiophene, and thiazole and benzoxazole heterocycles with electronically and sterically deactivated bromoarenes was selectively and efficiently promoted by ferrocenyl polyphosphanes. In this C[BOND]H bond activation reaction of heteroaromatics, the performances of polydentate di-, tri-, and tetraphosphane ligands were compared, showing that the triphosphane 1,1′,2-tris(diphenylphosphino)-4-tert-butylferrocene 3 was the most effective for the coupling. The introduction of more electron-donating (iPr) or electron-withdrawing (furyl) groups on the phosphorus atoms did not improve the ligand performances. The …

Denticitychemistry.chemical_elementCH activation010402 general chemistry01 natural sciencesMedicinal chemistryCatalysisInorganic Chemistrychemistry.chemical_compound[ CHIM.CATA ] Chemical Sciences/CatalysisThiopheneOrganic chemistryChelation[CHIM.COOR]Chemical Sciences/Coordination chemistryPhysical and Theoretical ChemistryThiazoleheterocycles010405 organic chemistryLigandOrganic Chemistry[ CHIM.COOR ] Chemical Sciences/Coordination chemistry[CHIM.CATA]Chemical Sciences/CatalysisBenzoxazolepalladiumhomogeneous catalysis0104 chemical sciencesTriphosphanechemistryligands effectsPalladium
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Mononuclear Perfluoroalkyl-Heterocyclic Complexes of Pd(II): Synthesis, Structural Characterization and Antimicrobial Activity

2020

Two mononuclear Pd(II) complexes [PdCl2(pfptp)] (1) and [PdCl2(pfhtp)] (2), with ligands 2-(3-perfluoropropyl-1-methyl-1,2,4-triazole-5yl)-pyridine (pfptp) and 2-(3-perfluoroheptyl-1-methyl-1,2,4-triazole-5yl)-pyridine (pfhtp), were synthesized and structurally characterized. The two complexes showed a bidentate coordination of the ligand occurring through N atom of pyridine ring and N4 atom of 1,2,4-triazole. Both complexes showed antimicrobial activity when tested against both Gram-negative and Gram-positive bacterial strains.

Denticityperfluoroalkyl heterocyclic ligandsSpectrophotometry InfraredStereochemistryProton Magnetic Resonance SpectroscopyPharmaceutical ScienceMicrobial Sensitivity TestsSettore BIO/19 - Microbiologia GeneraleRing (chemistry)Analytical Chemistrylcsh:QD241-441chemistry.chemical_compoundlcsh:Organic chemistryAnti-Infective AgentsHeterocyclic CompoundsDrug DiscoveryPyridinemononuclear palladium complexesSettore BIO/06 - Anatomia Comparata E CitologiaPhysical and Theoretical ChemistrytriazolesFluorocarbonsantimicrobial activityBacteriaChemistryLigandCommunicationnarcosisOrganic ChemistrySettore CHIM/06 - Chimica OrganicaDNAAntimicrobialSettore CHIM/03 - Chimica Generale E InorganicaChemistry (miscellaneous)Molecular MedicinePalladiumPlasmidsMolecules
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Separation of plasma membrane proteins of cultured human fibroblasts by affinity chromatography on bonded microparticulate silicas.

1984

Abstract Adsorbents for high-performance affinity chromatography were prepared by bonding proteins and reactive Procion triazine dyes to 3-isothiocyanatopropyl- and 3-aminopropylsilicas. The materials prepared were used successfully in the separation of hydrophobic plasma membrane proteins of cultured human fibroblasts. The data obtained show that the reaction of 3-isothiocyanatopropyltriethoxysilane (ITCPS) with the surface hydroxyl groups of silica yields a new and convenient route to preparing an “activated carrier” that is capable of coupling with potential affinity ligands containing amino functional groups. The reaction and bonding procedures of 3-isothiocyanatopropyltriethoxysilane a…

DetergentsSilica GelLigandsBiochemistryChromatography AffinityAnalytical ChemistryCatalysischemistry.chemical_compoundAdsorptionAffinity chromatographyIsothiocyanatesHumansColoring AgentsCells CulturedTriazineChromatographyAqueous solutionOrganic baseLigandOrganic ChemistryCell MembraneMembrane ProteinsGeneral MedicineFibroblastsHydrogen-Ion ConcentrationSilanesSilicon DioxideSolventMolecular WeightchemistryElectrophoresis Polyacrylamide GelJournal of chromatography
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Chiral α-P,N Ligands From a Diastereoselective Ph2PH Addition to (η6-Benzaldimine)tricarbonylchromium Complexes

1999

International audience; Chiral α-aminophosphane (α-P–C–N) ligands have been prepared by reversible addition of Ph2PH to tricarbonylchromium benzaldimine complexes (CO)3Cr[η6-o-C6H4(Y)(CH=NR)] (with Y, R = CH3, CH3 or CH2COOCH3; CH3O, CH3 or p-CH3OC6H4; Cl, C6H5), with complete diastereoselectivity. These complexes are stabilized in solution by electron-withdrawing group(s) on the imine.

Diastereoselective reactionsStereochemistryOrganic ChemistryImine3. Good healthP ligandschemistry.chemical_compoundChromium complexeschemistryAminophosphaneGroup (periodic table)[CHIM.COOR]Chemical Sciences/Coordination chemistryPhysical and Theoretical ChemistryChiralityChirality (chemistry)
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