Search results for "Ionic polymerization"

showing 10 items of 481 documents

Coordination properties of imino(2-pyridyl)methylpalladium(II) compounds. Reactions with the chloride-bridged allyl dimers [MCl(η3-2-MeC3H4)]2 (MPd,…

1990

Abstract The imino(2-pyridyl)methylpalladium(II) compounds py-2-CR 1 NR [R 1 = trans -PdCl(PPh 3 ) 2 , R = C 6 H 4 OMe- p ( Ia ), Me ( Ib ), CMe 3 ( Ic ); R 1 = Pd(dmtc)(PPh 3 ), R = C 6 H 4 OMe- p ( Id )] react with [MCl(η 3 - 2-MeC 3 H 4 )] 2 (M = Pd, Pt) in a molar ratio 1/0.5 and in the presence of NaClO 4 to yield the binuclear cationic complexes II , [M(η 3 -2-MeC 3 H 4 )(py-2-CR 1 NR)]ClO 4 , where the α-diimino group acts as σ,σ N , N ′ chelating ligand. In the absence of NaClO 4 and with a molar ratio 1/1, the reaction leads initially to formation of a ionic intermediate A , [M(η 3 - 2-MeC 3 H 4 )(py-2-CR 1 NR)] [MCl 2 (η 3 -2-MeC 3 H 4 )], which subsequently undergoes exchange …

StereochemistryLigandSubstituentCationic polymerizationDiastereomerIonic bondingDissociation (chemistry)Inorganic ChemistryNMR spectra databasechemistry.chemical_compoundchemistryMaterials ChemistryChelationPhysical and Theoretical ChemistryInorganica Chimica Acta
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Synthesis and characterization of new allyl palladium complexes with thionate ligands; X-ray molecular structures of [Pd3(η3-C4H7)3{pm(Me)2S}2](CF3SO…

1999

Abstract The reaction of [Pd(η3-C4H7)]CF3SO3 (η3-C4H7=η3-2-MeC3H4) (1), prepared in situ by reaction of [Pd(η3-C4H7)Cl]2 with AgCF3SO3, with various thionate ligands, gives new polymeric complexes formulated as [Pd(η3-C4H7)(RS)]n (2) [RS=pyS (pyridine-2-thionate)], im(Me)S(imidazole-3-methyl-2-thionate) (3), pm(Me)2S (pyrimidine-4,6-dimethyl-2-thionate) (4). A solution of 4 contaminated with KCF3SO3 evolves to give crystals that correspond to a new polymeric species whose X-ray crystal molecular structure indicates the presence of cationic infinite chains built of trinuclear units, [Pd3(η3-C4H7)3{pm(Me)2S}2]+ (5). Finally, the formation of a mononuclear thionate-containing palladium complex…

StereochemistryOrganic ChemistryCationic polymerizationX-raychemistry.chemical_elementCrystal structureBiochemistryInorganic ChemistryCrystalCrystallographychemistry.chemical_compoundchemistryAtomPyridineMaterials ChemistryMoleculePhysical and Theoretical ChemistryPalladiumJournal of Organometallic Chemistry
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Synthesis, structure, and nuclease properties of several binary and ternary complexes of copper(II) with norfloxacin and 1,10 phenantroline

2007

Three new binary Cu(II) complexes of norfloxacin have been synthesized and characterized. We also report the synthesis, characterization and X-ray crystallographic structures of a new binary compound, [Cu(HNor)(2)]Cl(2).2H(2)O (2) and two new ternary complexes norfloxacin-copper(II)-phen, [Cu(Nor)(phen)(H(2)O)](NO(3)).3H(2)O (4), and [Cu(HNor)(phen)(NO(3))](NO(3)).3H(2)O (5). The structure of 2 consists of two crystallographically independent cationic monomeric units of [Cu(HNor)(2)](2+), chloride anions, and uncoordinated water molecules. The Cu(II) ion is placed at a center of symmetry and is coordinated to two norfloxacin ligands which are related through the inversion center. The struct…

StereochemistryRadicalBinary compoundCrystallography X-RayBiochemistryInorganic ChemistryMetalchemistry.chemical_compoundTandem Mass SpectrometrySpectroscopy Fourier Transform InfraredOrganometallic CompoundsMoleculeDeoxyribonucleasesMolecular StructureCationic polymerizationSquare pyramidal molecular geometryCrystallographyMonomerchemistryvisual_artvisual_art.visual_art_mediumSpectrophotometry UltravioletTernary operationCopperFluoroquinolonesNorfloxacinPhenanthrolinesJournal of Inorganic Biochemistry
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Bimetallic ruthenium-tin chemistry: synthesis and molecular structure of arene ruthenium complexes containing trichlorostannyl ligands

2010

A series of neutral, anionic and cationic arene ruthenium complexes containing the trichlorostannyl ligand have been synthesised from SnCl2 and the corresponding arene ruthenium dichloride dimers [(η6-arene)Ru(μ2-Cl)Cl]2 (arene = C6H6, PriC6H4Me). While the reaction with triphenylphosphine and stannous chloride only gives the neutral mono(trichlorostannyl) complexes [(η6-C6H6)Ru(PPh3)(SnCl3)Cl] (1) and [(η6-PriC6H4Me)Ru(PPh3)(SnCl3)Cl] (2), the neutral di(trichlorostannyl) complex [(η6-PriC6H4Me)Ru(NCPh)(SnCl3)2] (3) could be obtained for the para-cymene derivative with benzonitrile as additional ligand. By contrast, the analogous reaction with the benzene derivative leads to a salt compose…

Stereochemistrychemistry.chemical_element010402 general chemistry01 natural sciencesBiochemistryMedicinal chemistryInorganic Chemistrychemistry.chemical_compoundMaterials ChemistryMolecule[CHIM.COOR]Chemical Sciences/Coordination chemistryPhysical and Theoretical ChemistryTriphenylphosphinerutheniumhalf-sandwich complexesarene ligandsComputingMilieux_MISCELLANEOUS010405 organic chemistryChemistryLigandOrganic ChemistryCationic polymerization[ CHIM.COOR ] Chemical Sciences/Coordination chemistrytrichlorostannyl0104 chemical sciencesRutheniumBenzonitrileHexamethylenetetramineDerivative (chemistry)
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Versatile synthesis of cationic N-heterocyclic carbene–gold(i) complexes containing a second ancillary ligand. Design of heterobimetallic ruthenium–g…

2016

We describe a versatile and quick route to cationic gold(i) complexes containing N-heterocyclic carbenes and a second ancillary ligand (such as phosphanes, phosphites, arsines and amines) of interest for the synthesis of compounds with potential catalytic and medicinal applications. The general synthetic strategy has been applied in the preparation of novel cationic heterobimetallic ruthenium(ii)-gold(i) complexes that are highly cytotoxic to renal cancer Caki-1 and colon cancer HCT 116 cell lines while showing a synergistic effect and being more selective than their monometallic counterparts.

Stereochemistrychemistry.chemical_elementLigands010402 general chemistry01 natural sciencesArticleRutheniumCatalysisCatalysischemistry.chemical_compoundHeterocyclic CompoundsCationsMaterials Chemistry010405 organic chemistryChemistryLigandSecond ancillaryMetals and AlloysCationic polymerizationGeneral ChemistryCombinatorial chemistry0104 chemical sciencesSurfaces Coatings and FilmsElectronic Optical and Magnetic MaterialsRutheniumCeramics and CompositesGoldMethaneCarbeneChemical Communications
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Synthesis of the first imidazolyl-triphosphines containing a Triphos unit

2007

Abstract Since biphasic liquid–liquid continuous-flow catalytic processes often require the use of cationic phosphine ligands for the metal sequestration in the polar phase, we have prepared the first imidazolyl triphosphines, named Triphosim and Triphosmim. These ligands contain the Triphos unit [-P(CH2CH2PPh2)] which is linked to the imidazole fragment and have been obtained in three steps from imidazole (or 2-methylimidazole), diethylvinylphosphonate and diphenylvinylphosphine with global yields of 42–48%. The Triphosim ligand adopts a tridentate P-coordination mode in a palladium dichloride complex and the reaction of the dangling imidazole function with alkyl halides leads to a new kin…

Stereochemistrychemistry.chemical_element[CHIM.INOR]Chemical Sciences/Inorganic chemistry010402 general chemistry01 natural sciencesCatalysisInorganic Chemistrychemistry.chemical_compoundPolymer chemistryMaterials ChemistryImidazolePhysical and Theoretical ChemistryAlkylComputingMilieux_MISCELLANEOUSdonor-stabilized phosphenium compoundchemistry.chemical_classification010405 organic chemistryLigandCationic polymerization[ CHIM.INOR ] Chemical Sciences/Inorganic chemistryTriphos0104 chemical scienceschemistryphosphorylation mechanismPhosphinePalladium
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Isomer Distribution and Interconversion in Cationic Allylpalladium(II) Complexes with 2-(Iminomethyl)pyridine Ligands

1997

The complexes [Pd(η3-allyl)(N-N‘)]ClO4 [allyl = 2-butenyl or 3-methyl-2-butenyl, N-N‘ = C5H3(6-R)N-2-CHNR‘ (R = H, R‘ = Me, CMe3, C6H4OMe-4; R = Me, R‘ = C6H4OMe-4) and C5H4N-2-CH2NMe2] are present in solution with different isomers, the structures of which may be assigned by an 1H NMR criterion based on chemical shift changes of the pyridine H(6) and/or of the allylic methyl protons, as confirmed also by 2D 1H NMR spectra. The isomer distribution depends mainly on the steric requirements of both the allyl and N-N‘ ligands:  for [Pd(η3-3-methyl-2-butenyl)(N-N‘)]ClO4 the predominant isomer (ca. 100%) has a structure with the allylic methyl groups cis to the coordinated pyridine nitrogen when…

Steric effectsAllylic rearrangementChlorinated solventsLigandStereochemistryOrganic ChemistryCationic polymerizationPyridine ligandInorganic Chemistrychemistry.chemical_compoundchemistryPyridineProton NMRPhysical and Theoretical ChemistryOrganometallics
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Insertion Reactions of Neutral Phosphidozirconocene Complexes as a Convenient Entry into Frustrated Lewis Pair Territory

2016

International audience; Neutral phosphidozirconocene complexes [Cp2Zr(PR2)Me] (Cp=cyclopentadienyl; 1a: R=cyclohexyl (Cy); 1b: R=mesityl (Mes); 1c: R=tBu) undergo insertion into the Zr-P bond by non-enolisable carbonyl building blocks (O=CRR), such as benzophenone, aldehydes, paraformaldehyde or CO2, to give [Cp2Zr(OCRRPR2)Me] (3-7). Depending on the steric bulk around P, complexes 3-7 react with B(C6F5)(3) to give O-bridged cationic zirconocene dimers that display typical frustrated Lewis pair (FLP)/ambiphilic ligand behaviour. Thus, the reaction of {[Cp2Zr(-OCHPhPCy2)][MeB(C6F5)(3)]}(2) (10a) with chalcone results in 1,4 addition of the Zr+/P FLP, whereas the reaction of {[Cp2Zr(-OCHFcPCy…

Steric effectsChalconeStereochemistryzirconiumc-h activation010402 general chemistry01 natural sciencesMedicinal chemistry[ CHIM ] Chemical SciencesCatalysisFrustrated Lewis pairinsertionchemistry.chemical_compoundCyclopentadienyl complexx-ray structuresphosphinidene complexesBenzophenone[CHIM]Chemical SciencesParaformaldehydezr-p bondzirconocene-phosphido complexesmolecular-structure010405 organic chemistryLigandphosphidesOrganic ChemistryCationic polymerizationcrystal-structureGeneral Chemistry0104 chemical sciencesfunctionalized ligandsbis(trimethylsilyl)phosphido complexeschemistryfrustrated Lewis pairsphosphinoaryloxide complexesambiphilic ligands
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Unveiling the Ionic Diels-Alder Reactions within the Molecular Electron Density Theory

2021

The ionic Diels–Alder (I-DA) reactions of a series of six iminium cations with cyclopentadiene have been studied within the Molecular Electron Density Theory (MEDT). The superelectrophilic character of iminium cations, ω &gt

Steric effectsCyclopentadienePharmaceutical ScienceIonic bonding010402 general chemistry01 natural sciencesArticleAnalytical Chemistrychemistry.chemical_compoundQD241-441Computational chemistryDrug Discoveryionic Diels–Alder reactionsReactivity (chemistry)Physical and Theoretical Chemistryorganic_chemistry010405 organic chemistryChemistryOrganic ChemistrySolvationCationic polymerizationMolecular Electron Density TheoryIminiumiminium cationsElectron localization function3. Good health0104 chemical sciencesChemistry (miscellaneous)asynchronicityglobal electron density transfersuperelectrophilesMolecular Medicine
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Synthesis and Structure of a Potassium Potassiochromate: A Bis-Chromium(II) Molecule Held Together by Near-Square-Planar Potassium−Ligand Bridges

2010

No Cr-Cr bonding is found in a new type of mixed-metal ate complex having two coordinatively unsaturated but sterically saturated bisamido-monoalkyl Cr(II) groups linked via an unusual near-square-planar-coordinated K atom in the moiety of the ate, while the cationic moiety is a separated iris-tmeda solvated second potassium atom.

Steric effectsLigandMetalationChemistryPotassiumOrganic ChemistryCationic polymerizationchemistry.chemical_elementAte complexPhotochemistryInorganic ChemistryCrystallographyMoietyMoleculePhysical and Theoretical ChemistryOrganometallics
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