Search results for "metal-complexes"

showing 10 items of 20 documents

Ferrocenyl-Coupled N-Heterocyclic Carbene Complexes of Gold(I)

2016

Four gold(I) carbene complexes featuring 4-ferro-cenyl-substituted imidazol-2-ylidene ligands were investigated for antiproliferative and antivascular properties. They were active against a panel of seven cancer cell lines, including multidrug-resistant ones, with low micromolar or nanomolar IC50 (72 h) values, according to their lipophilicity and cellular uptake. The delocalized lipophilic cationic complexes 8 and 10 acted by increasing the reactive oxygen species in two ways: through a genuine ferrocene effect and by inhibiting the thioredoxin reductase. Both complexes gave rise to a reorganization of the F-actin cytoskeleton in endothelial and melanoma cells, associated with a G1 phase c…

StereochemistryMetallocenesThioredoxin reductaseANTITUMOR-ACTIVITYDNA-BINDINGAntineoplastic AgentsCARCINOMA-CELLSCELLULAR UPTAKEPOTENTIAL ANTICANCER010402 general chemistrymetal-based drugs01 natural sciencesCatalysisantitumor agentschemistry.chemical_compoundMiceCoordination ComplexesAnimalsQDFerrous CompoundsIC50CANCER CELLSantivascular activitychemistry.chemical_classificationTube formationReactive oxygen species010405 organic chemistryChemistryOrganic ChemistryCell migrationGeneral ChemistryIN-VITROgold0104 chemical sciencescarbenesChorioallantoic membraneLipophilicityMETAL-COMPLEXESReactive Oxygen SpeciesTHIOREDOXIN REDUCTASE INHIBITORSCHORIOALLANTOIC MEMBRANE MODELCarbeneChemistry
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Bis(4-methylthio)phenylthiomethane as assembling ligand for the construction of Cu(I) and Hg(II) coordination polymers. Crystal structures and topolo…

2016

International audience; The novel 1D coordination polymer (CP) [{Cu(mu(2)-Br)(2)Cu}(mu-L2)(2)] CP2 has been obtained by reaction of the tetrakisthioether p-MeSC6H4SCH2SC6H4SMe-p (L2) with CuBr in a 1: 2 metal-to ligand ratio. In contrast to the previously described CP [{Cu(mu(2)-Br)(2)Cu}(mu-L1)(2)] CP1 obtained by reaction of the tetrakisthioether p-MeOC6H4SCH2SC6H4OMe-p (L1) with CuBr, the two independent extended 1D ribbons contain bent Cu(mu(2)-Br)(2)Cu units of the butterfly-type with short Cu center dot center dot center dot Cu separations of 2.679(1) and 2.613(1) angstrom. In contrast to the common planar rhomboid Cu(mu(2)-Br)(2)Cu cluster, this butterfly-shaped geometry of the core …

QT-AIMLuminescenceCoordination polymerStereochemistryCoordination number[ PHYS.ASTR ] Physics [physics]/Astrophysics [astro-ph]StackingCrystal structure[CHIM.INOR]Chemical Sciences/Inorganic chemistry010402 general chemistry01 natural sciences[ CHIM ] Chemical Sciencesdinuclear copper(i) complexesInorganic Chemistrychemistry.chemical_compoundelectron-densityThioetheraryl substitutionMaterials Chemistry[CHIM]Chemical Sciencescluster-sizePhysical and Theoretical Chemistrytetrathioether complexesComputingMilieux_MISCELLANEOUSThioether complexesluminescence properties010405 organic chemistrypi-pi stackingAtoms in moleculescu-i interaction[ CHIM.INOR ] Chemical Sciences/Inorganic chemistryMercury0104 chemical sciencesCoordination polymersCrystallographychemistryCovalent bondextended 1dStoichiometryCoppermetal-complexes
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Complexation behaviour of hexadentate ligands possessing N2O4and N2O2S2cores: differential reactivity towards Co(ii), Ni(ii) and Zn(ii) salts and str…

2004

Reactions of divalent metal salts of Co, Ni and Zn with 1,2-di(salicylaldimino-o-phenylthio) ethane (H2L1) and 1,2-di(naphthaldimino-o-phenylthio) ethane (H2L2), having N2O2S2 cores, and 1,2-di(O-salicylaldimino-o-hydroxyphenyl) ethane (H2L3), having a N2O4 core, have been explored. Out of the three ligands and the nine products obtained from the corresponding reactions, two ligands and seven products were crystallographically characterized. However, all the ligands and the products were characterized by analytical and spectral methods. Reaction of H2L1 and H2L2 with Co(II) salts results in oxidative cleavage of the C-S bond to produce a Co(III) product bound to two dissimilar tridentate li…

Crystal-StructureC-SChemistryInorganic chemistrySize-Specific TransformationsNso-Donor LigandsNickel(Ii) ComplexesCobaltGeneral ChemistryCrystal structureBaseS Bond-CleavageThioethersChemical reactionCatalysisBond lengthCrystallographyOctahedronChemical bondMaterials ChemistryChelationReactivity (chemistry)Metal-ComplexesBond cleavageNew J. Chem.
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Potential anticancer heterometallic Fe-Au and Fe-Pd agents: Initial mechanistic insights

2013

A series of gold(III) and palladium(II) heterometallic complexes with new iminophosphorane ligands derived from ferrocenylphosphanes [{Cp-P(Ph2)═N-Ph}2Fe] (1), [{Cp-P(Ph2)═N-CH2-2-NC5H4}2Fe] (2), and [{Cp-P(Ph2)═N-CH2-2-NC5H4}Fe(Cp)] (3) have been synthesized and structurally characterized. Ligands 2 and 3 afford stable coordination complexes [AuCl2(3)]ClO4, [{AuCl2}2(2)](ClO4)2, [PdCl2(3)], and [{PdCl2}2(2)]. The complexes have been evaluated for their antiproliferative properties in human ovarian cancer cells sensitive and resistant to cisplatin (A2780S/R), in human breast cancer cells (MCF7) and in a nontumorigenic human embryonic kidney cell line (HEK-293T). The highly cytotoxic trimeta…

STRUCTURAL-CHARACTERIZATIONARENE-RUTHENIUM COMPLEXESStereochemistryANTITUMOR-ACTIVITYchemistry.chemical_elementGOLD COMPOUNDSAntineoplastic AgentsCYTOTOXIC ACTIVITYArticleCoordination ComplexesCell Line TumorDrug DiscoveryOrganometallic CompoundsmedicineHumansCytotoxic T cellFerrous CompoundsBIOLOGICAL-PROPERTIESGroup 2 organometallic chemistryCisplatinHEK 293 cellsIn vitroPLATINUM(II) COMPLEXESHEK293 CellschemistryCELL-DEATHCell cultureCancer cellMolecular MedicineMETAL-COMPLEXESCisplatinOrganogold CompoundsPalladiumX-RAY-STRUCTUREPalladiummedicine.drug
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Determinants for Tight and Selective Binding of a Medicinal Dicarbene Gold(I) Complex to a Telomeric DNA G-Quadruplex: a Joint ESI MS and XRD Investi…

2016

International audience; The dicarbene gold(I) complex [Au(9-methylcaffein-8-ylidene)(2)]BF4 is an exceptional organometallic compound of profound interest as a prospective anticancer agent. This gold(I) complex was previously reported to be highly cytotoxic toward various cancer cell lines invitro and behaves as a selective G-quadruplex stabilizer. Interactions of the gold complex with various telomeric DNA models have been analyzed by a combined ESI MS and X-ray diffraction (XRD) approach. ESI MS measurements confirmed formation of stable adducts between the intact gold(I) complex and Tel 23 DNA sequence. The crystal structure of the adduct formed between [Au(9-methylcaffein-8-ylidene)(2)]…

0301 basic medicineSpectrometry Mass Electrospray IonizationESI mass spectrometryStereochemistryElectrospray ionizationStackingESI mass spectrometry; G-quadruplexes; X-ray diffraction; cancer; gold[SDV.CAN]Life Sciences [q-bio]/CancerCrystal structurepotential anticancer agents010402 general chemistryG-quadruplex01 natural sciences[ CHIM ] Chemical SciencesCatalysisAdduct[ SDV.CAN ] Life Sciences [q-bio]/Cancerchemistry.chemical_compound03 medical and health sciencescancer[CHIM]Chemical SciencesChemistry010405 organic chemistryloop flexibilityapoptosiscrystal-structureGeneral ChemistryGeneral MedicineTelomeregoldG-quadruplexesinhibition3. Good health0104 chemical sciencesX-ray diffractionstabilizationcarbene complexessmall molecules030104 developmental biologypancreatic-cancer cellsX-ray crystallographySelectivityDNAmetal-complexes
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Structural and Luminescent Properties of Homoleptic Silver(I), Gold(I), and Palladium(II) Complexes with nNHC-tzNHC Heteroditopic Carbene Ligands

2019

Novel silver(I), gold(I), and palladium(II) complexes were synthesized with bidentate heteroditopic carbene ligands that combine an imidazol-2-ylidene (nNHC) with a 1,2,3-triazol-5-ylidene (tzNHC) connected by a propylene bridge. The silver(I) and gold(I) complexes were dinuclear species, [M-2(nNHC-tzNHC)(2)](PF6)(2) (M = Ag or Au), with the two bidentate ligands bridging the metal centers, whereas in the palladium(II) complex [Pd(nNHC-tzNHC)(2)]-(PF6)(2), the two ligands were chelated on the same metal center. Because of the presence of two different carbene units, isomers were observed for the gold(I) and palladium(II) complexes. The molecular structures of the head-to-tail isomer for gol…

Denticity010405 organic chemistryGeneral Chemical EngineeringINTEGRATION SCHEMEchemistry.chemical_elementGeneral Chemistry010402 general chemistry01 natural sciencesArticleREACTIVITY0104 chemical scienceslcsh:ChemistryELECTRONIC-PROPERTIESchemistry.chemical_compoundchemistrylcsh:QD1-999Polymer chemistrySTATISTICAL AVERAGEMETAL-COMPLEXESHomolepticLuminescenceCarbenePalladiumAPPROXIMATION
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Ligand-Based Charge-Transfer Luminescence in Ionic Cyclometalated Iridium(III) Complexes Bearing a Pyrene-Functionalized Bipyridine Ligand: A Joint T…

2012

Two new heteroleptic iridium(III) complexes [Ir(ppy)(2)(pyr(2)bpy)][PF(6)] ([1a][PF(6)]) and [Ir(dfppy)(2)(pyr(2)bpy)][PF(6)] ([2a][PF(6)]), where Hppy = 2-phenylpyridine, Hdfppy = 2-(3,5-difluorophenyl)pyridine, and pyr(2)bpy = 5,5'-bis(pyren-1-yl)-2,2'-bipyridine, have been synthesized and fully characterized. The single-crystal structures of pyr(2)bpy and the complexes 4{[1a][PF(6)]}·2CH(2)Cl(2)·9H(2)O and [2a][PF(6)]·0.25CH(2)Cl(2)·H(2)O have been determined. The effect of the pyrene substituents on the electronic properties is investigated through a comprehensive photophysical and theoretical study on the two complexes in comparison to reference complexes without substituents on the an…

ELECTROLUMINESCENT DEVICESAbsorption spectroscopyEMITTING ELECTROCHEMICAL-CELLSchemistry.chemical_element02 engineering and technology010402 general chemistryPhotochemistry01 natural sciencesInorganic ChemistryBipyridinechemistry.chemical_compoundPyridineCRYSTAL-STRUCTURESIridiumPhysical and Theoretical ChemistryCHELATED RUTHENIUM(II) COMPLEXEXACT-EXCHANGEChemistryLigand021001 nanoscience & nanotechnologyTRANSITION-METAL-COMPLEXES0104 chemical sciences3. Good healthCrystallographyPHOTOPHYSICAL PROPERTIESQUANTUM YIELDSIntramolecular forcePyreneEXCITED-STATE PROPERTIESSENSITIZED SOLAR-CELLS0210 nano-technologyLuminescenceInorg. Chem.
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Iridium(III) Complexes with Phenyl-tetrazoles as Cyclometalating Ligands

2014

Ir(II) cationic complexes with cyclometalating tetrazolate ligands were prepared for the first time, following a two-step strategy based on (i) a silver-assisted cyclometalation reaction of a tetrazole derivative with IrCl3 affording a bis-cyclometalated solvato-complex P ([Ir(ptrz)(2)(CH3CN)(2)](+), Hptrz = 2-methyl-5-phenyl-2H-tetrazole); (ii) a substitution reaction with five neutral ancillary ligands to get [Ir(ptrz)(2)L](+), with L = 2,2'-bypiridine (1), 4,4'-di-tert-butyl-2,2'-bipyridine (2), 1,10-phenanthroline (3), and 2-(1-phenyl-1H-1,2,3-triazol-4-yl)pyridine (4), and [Ir(ptrz)(2)L-2](+), with L = tertbutyl isocyanide (5). X-ray crystal structures of P, 2, and 3 were solved. Elect…

Substitution reactionIr(III) complexePhenanthrolineIsocyanidechemistry.chemical_elementphenyl tetrazolesPhotochemistryMedicinal chemistryInorganic Chemistrychemistry.chemical_compoundBipyridinechemistryPyridineEMITTING ELECTROCHEMICAL-CELLS; TRANSITION-METAL-COMPLEXES; IR(III) COMPLEXES; ELECTROLUMINESCENT DEVICES; ANCILLARY LIGAND; SOLID-STATE; PHOTOPHYSICAL PROPERTIES; POLYPYRIDINE COMPLEXES; BLUE PHOSPHORESCENCE; ISOCYANIDE COMPLEXESTetrazoleIridiumPhysical and Theoretical ChemistryAcetonitrile
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Phenoxyamidine Zn and Al Complexes: Synthesis, Characterization, and Use in the Ring-Opening Polymerization of Lactide

2019

International audience; Herein we report the synthesis of new ditopic ligands, which consist of a phenoxy group and N,N,N'trisubstituted amidines linked by a methylene spacer (L1-L4). Their coordination chemistry has been studied/investigated with Zn(II) and Al(III). Alkane elimination route between the phenol-amidine proligands (L1H-L4H) and Et2Zn led to dinuclear complexes [(L1-L4)ZnEt]2 (1a-4a) in which the Zn centers are chelated by phenoxyamidine ligands and bridged through the oxygen atom of the phenoxy groups. Salt metathesis reaction between two equivalents of the sodium amidine phenate L1Na and ZnCl2 led to a bis-chelate chiral spiro-complex (L12Zn) 1a'. Analogous alkane eliminatio…

STRUCTURAL-CHARACTERIZATIONchemistry.chemical_elementCATALYSTSZinc010402 general chemistryLIGANDS SYNTHESIS01 natural sciencesRing-opening polymerizationCoordination complexCatalysisInorganic Chemistrychemistry.chemical_compoundZINCIMINE LIGANDSGroup (periodic table)Polymer chemistry[CHIM.COOR]Chemical Sciences/Coordination chemistryPhysical and Theoretical ChemistryMethyleneCYCLIC ESTERSALUMINUM COMPLEXESchemistry.chemical_classificationEPSILON-CAPROLACTONELactide010405 organic chemistryOrganic ChemistryGROUP-4 METAL-COMPLEXES[CHIM.CATA]Chemical Sciences/CatalysisImine ligands0104 chemical scienceschemistryINITIATORSGROUP-4 METAL-COMPLEXES; ALUMINUM COMPLEXES; EPSILON-CAPROLACTONE; LIGANDS SYNTHESIS; IMINE LIGANDS; STRUCTURAL-CHARACTERIZATION; CYCLIC ESTERS; ZINC; CATALYSTS; INITIATORS
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Origin of the large spectral shift in electroluminescence in a blue light emitting cationic iridium(III) complex

2007

A new, but archetypal compound [ Ir( ppy- F-2) (2)Me(4)phen] PF6, where ppy- F2 is 2-(2',4'- fluorophenyl) pyridine and Me(4)phen is 3,4,7,8- tetramethyl- 1,10- phenanthroline, was synthesized and used to prepare a solid-state light-emitting electrochemical cell (LEEC). This complex emits blue light with a maximum at 476 nm when photoexcited in a thin film, with a photoluminescence quantum yield of 52%. It yields an efficient single-component solid-state electroluminescence device with a current efficiency reaching 5.5 cd A(-1) and a maximum power efficiency of 5.8 Lm Watt(-1). However, the electroluminescence spectrum is shifted with respect to the photoluminescence spectrum by 80 nm resul…

education.field_of_studyFunctional Response TheoryPhotoluminescenceExcitation-EnergiesTransition-Metal-ComplexesChemistryPopulationQuantum yieldSolid-StateGeneral ChemistryExcited-State PropertiesElectroluminescencePhotochemistryOptical SpectroscopyExcited stateMaterials ChemistryLight emissionEmission spectrumElectrochemical-CellsTriplet stateeducationRoom-TemperatureSingle-LayerPhotophysical Properties
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