Search results for "Phenylacetylene"

showing 10 items of 36 documents

The Taming of Redox‐Labile Phosphidotitanocene Cations

2019

International audience; Tame d0 phosphidotitanocene cations stabilized with a pendant tertiary phosphane arm are reported. These compounds were obtained by one-electron oxidation of d1 precursors with [Cp2Fe][BPh4]. The electronic structure of these compounds was studied experimentally (EPR, UV/Vis, and NMR spectroscopy, X-ray diffraction analysis) and through DFT calculations. The theoretical analysis of the bonding situation by using the electron localization function (ELF) shows the presence of π-interactions between the phosphido ligand and Ti in the d0 complexes, whereas dπ–pπ repulsion prevents such interactions in the d1 complexes. In addition, CH–π interactions were observed in seve…

010402 general chemistry01 natural sciencesRedoxTransition metal phosphidesCatalysisFrustrated Lewis pairlaw.inventionchemistry.chemical_compoundFrustrated Lewis Pair (FLP)[CHIM.ANAL]Chemical Sciences/Analytical chemistrylaw[CHIM.COOR]Chemical Sciences/Coordination chemistryPhosphorus LigandsElectron paramagnetic resonanceDiphenylacetyleneComputingMilieux_MISCELLANEOUSTitanium[CHIM.ORGA]Chemical Sciences/Organic chemistry010405 organic chemistryLigandOrganic Chemistry[CHIM.MATE]Chemical Sciences/Material chemistryGeneral ChemistryNuclear magnetic resonance spectroscopyElectron localization function0104 chemical sciencesHomolysis[CHIM.THEO]Chemical Sciences/Theoretical and/or physical chemistryDensity Functional Theory (DFT)Crystallographychemistry[CHIM.CHEM]Chemical Sciences/CheminformaticsChemistry – A European Journal
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First copper(I) ferrocenyltetraphosphine complexes: possible involvement in Sonogashira cross-coupling reaction ?

2008

Preparation and characterization of the first examples of copper(I) ferrocenylpolyphosphine complexes are reported. The molecular structure of complex {P,P′,P′′-[1,1′,2,2′-tetrakis(diphenylphosphino)-4,4′-di-tert-butylferrocene]iodocopper(I)} (1) was solved by X-ray diffraction studies, and its fluxional behavior in solution was investigated by VT-31P NMR; both revealed a net triligated coordination preference of the ferrocenyl tetraphosphine Fc(P)4tBu with copper. The tetradentate ligand is an active auxiliary in Sonogashira alkynylation; therefore the general question of copper as a competitive coordination partner in the Pd/Cu-catalyzed Sonogashira reaction was raised and discussed. Elec…

010405 organic chemistryArylOrganic Chemistry[ CHIM.COOR ] Chemical Sciences/Coordination chemistrySonogashira couplingchemistry.chemical_element010402 general chemistry01 natural sciencesMedicinal chemistryCopperCoupling reaction0104 chemical sciencesCatalysisInorganic Chemistrychemistry.chemical_compoundchemistryPhenylacetyleneMolecule[CHIM.COOR]Chemical Sciences/Coordination chemistryPhysical and Theoretical ChemistryComputingMilieux_MISCELLANEOUSPalladium
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Copper(I)-catalysed regioselective synthesis of pyrazolo[5,1-c]-1,2,4-triazoles: A DFT mechanistic study

2017

Abstract Formation of pyrazolo[5,1-c]-1,2,4-triazoles by means of Cu(I)-catalysed [3+2] cycloaddition (32CA) reactions of C,N-cyclic azomethine imines with phenylacetylene, experimentally reported by Katritzky et al. (JOC 2012, 77, 5813), was studied using the density functional theory (DFT) method. Comparison with the uncatalysed 32CA reaction indicates that the Cu(I) catalyst provides new reaction pathways with lower electronic energy barriers in dichloromethane as solvent. The mechanism proposed by Katritzky for the Cu(I) catalysed reaction is compared with that proposed by Sharpless et al. (JACS 127, 2005, 210). The major difference between these two mechanisms lies in the coordination …

010405 organic chemistryChemistryStereochemistryAcetylideOrganic ChemistryImineRegioselectivity010402 general chemistry01 natural sciencesBiochemistryMedicinal chemistryCycloaddition0104 chemical sciencesCatalysischemistry.chemical_compoundPhenylacetyleneDrug DiscoveryMoietyDensity functional theoryTetrahedron
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Novel [6]- and [7]Helicene-Like Quinones via Mono- and Bidirectional Chromium-Templated Benzannulation of Bridged Binaphthyl Carbene Complexes

2005

A new organometallic approach to novel, functionalised, helicene-like quinones and bisquinones has been developed based on the chromium-templated [3+2+1] benzannulation reaction. The [5]helicene-analogous monocarbene chromium complexes 4, 5, 17 and 19, derived from dibromo-substituted methylene- or silylene-tethered binaphthols 2 and 3, react with various alkynes to give [6]helicene-like quinones 6–13 and 20–29 after oxidative work-up. A rare competition of angular vs. linear annulation is observed for the incorporation of phenylacetylene that affords quinones 21/22 and 28/29. Protection of the phenolic benzannulation product with camphanic acid chloride 14, followed by chromatographic sepa…

AnnulationChemistryStereochemistryArylOrganic ChemistryCrystal structureMedicinal chemistrychemistry.chemical_compoundEnantiopure drugHelicenePhenylacetylenePhysical and Theoretical ChemistryMethyleneCarbeneEuropean Journal of Organic Chemistry
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Electrospray Ionization Mass Spectrometry Studies on the Mechanism of Hydrosilylation of Terminal Alkynes Using an N-Heterocyclic Carbene Complex of …

2006

A new pyridine-4,5-dichloroimidazol-2-ylidene complex of Ir(I) has been obtained, and its catalytic activity toward hydrosilylation of phenylacetylene and 4-aminophenylacetylene has been studied. T...

ChemistryHydrosilylationElectrospray ionizationOrganic Chemistrychemistry.chemical_elementReaction intermediatePhotochemistryCombinatorial chemistryCatalysisCharacterization (materials science)Inorganic Chemistrychemistry.chemical_compoundPhenylacetyleneIridiumPhysical and Theoretical ChemistryCarbeneOrganometallics
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Copper(I) Iodide Polyphosphine Adducts at Low Loading for Sonogashira Alkynylation of Demanding Halide Substrates: Ligand Exchange Study between Copp…

2010

The prestabilization of copper iodide with a multidentate ferrocenyl phosphine ligand promotes the palladium-catalyzed cross-coupling of demanding halides with phenylacetylene in a selective way. Novel CuI-triphosphine adducts are described in the solid state and in solution. Their use allowed the introduction of the copper iodide cocatalyst in unprecedented low amounts (0.4 to 0.1 mol %) in systems also employing low amounts of “ligand-free” [PdII(η3-allyl)Cl]2 precursor (0.2 to 0.05 mol %). The scope of substrates is reported, and electronically or sterically deactivated bromides were efficiently coupled. Concerning aryl chlorides, electron-poor activated substrates were also coupled usin…

DenticityLigandOrganic Chemistrychemistry.chemical_elementSonogashira couplingHalidePhotochemistryCopperCombinatorial chemistryInorganic Chemistrychemistry.chemical_compoundchemistryPhenylacetylenePhysical and Theoretical ChemistryCopper(I) iodidePalladiumOrganometallics
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Reactions of Alkenes and Alkynes with an Acyclic Silylene and Heavier Tetrylenes under Ambient Conditions

2014

Cycloaddition reactions of the acyclic silylene Si(SAriPr4)2 (AriPr4 = C6H3-2,6(C6H3-2,6-iPr2)2) with a variety of alkenes and alkynes were investigated. Its reactions with the alkynes phenylacetylene and diphenylacetylene and the diene 2,3-dimethyl-1,3-butadiene yielded silacycles (AriPr4S)2tiebar above startSi(CH═tiebar above endCPh) (1), (AriPr4S)2tiebar above startSi(PhC═tiebar above endCPh) (2), and (AriPr4S)2tiebar above startSiCH2CMeCMetiebar above endCH2 (3) at ambient temperature. The compounds were characterized by X-ray crystallography, 1H, 13C, and 29Si NMR spectroscopy, and IR spectroscopy. No reaction was observed with more substituted alkenes such as propene, (Z)-2-butene, te…

DieneTrimethylsilylacyclic silyleneAlkynealkeenit ja alkyynitPhotochemistryMedicinal chemistryInorganic Chemistrychemistry.chemical_compoundraskaammat tetryleenitalkenes and alkynesCyclopenteneambient conditionssykloadditioreaktiotPhysical and Theoretical Chemistryasyklinen silyleeniDiphenylacetyleneta116chemistry.chemical_classificationOrganic ChemistrySilylenecyloaddition reactionsCycloadditionPhenylacetylenechemistrynormaalit ympäristön olosuhteethevier tetrylenes
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A Homoleptic Alkynyl‐Ligated [Au 13 Ag 16 L 24 ] 3− Cluster as a Catalytically Active Eight‐Electron Superatom

2020

A new alkynylated cluster [Au13 Ag16 (C10 H6 NO)24 ]3- is prepared by a NaBH4 mediated reduction method. The AuAg clusters are confirmed by sophisticated characterization techniques. It has a unique "Aucenter @Ag12 @Au12 Ag4 " metal framework which is protected by 24 atypical alkyne ligands L (L=C10 H6 NO). The ligands construct a unique type of motif L-(Ag)-Au-(Ag)-L at the cluster interface, where the alkyne (C≡C) group of each L was linked by sharing an Au atom through the σ bonds and each C≡C group was discretely connected to a chemically different Ag atom (Agicosahedral /Agcap ) through π bonds. The electronic and optical properties of [Au13 Ag16 L24 ]3- were studied. DFT characterized…

Diethylaminechemistry.chemical_classificationAbsorption spectroscopy010405 organic chemistrySuperatomAlkyneGeneral Chemistry010402 general chemistry01 natural sciencesCatalysisCoupling reaction0104 chemical scienceschemistry.chemical_compoundCrystallographychemistryPhenylacetyleneCluster (physics)HomolepticAngewandte Chemie International Edition
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3D Ruthenium Nanoparticle Covalent Assemblies from Polymantane Ligands for Confined Catalysis

2020

International audience; The synthesis of metal nanoparticle (NP) assemblies stabilized by functional molecules is an important research topic in nanoscience, and the ability to control interparticle distances and positions in NP assemblies is one of the major challenges in designing and understanding functional nanostructures. Here, two series of functionalized adamantanes, bis-adamantanes, and diamantanes, bearing carboxylic acid or amine functional groups, were used as building blocks to produce, via a straightforward method, networks of ruthenium NPs. Both the nature of the ligand and the Ru/ligand ratio affect the interparticle distance in the assemblies. The use of 1,3-adamantanedicarb…

General Chemical EngineeringCarboxylic acidchemistry.chemical_elementNanoparticle02 engineering and technology010402 general chemistryLigands01 natural sciencesCatalysischemistry.chemical_compound[CHIM.GENI]Chemical Sciences/Chemical engineeringOrganic acidsMaterials ChemistryGénie chimique[SPI.GPROC]Engineering Sciences [physics]/Chemical and Process EngineeringAminesGénie des procédéschemistry.chemical_classificationCatalystsLigandDecarbonylationGeneral Chemistry021001 nanoscience & nanotechnologyCombinatorial chemistry0104 chemical sciencesRutheniumchemistryPhenylacetyleneMetalsDensity functional theory0210 nano-technology
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C,N-chelated diaminocarbene platinum(II) complexes derived from 3,4-diaryl-1H-pyrrol-2,5-diimines and cis-dichlorobis(isonitrile)platinum(II): Synthe…

2020

The reaction of 3,4-diaryl-1H-pyrrol-2,5-diimines with cis-dichlorobis(isonitrile)platinum(II) affords the C,N-chelated diaminocarbene platinum(II) complexes, which have been fully characterized including molecular spectroscopy, single crystal X-ray diffraction and DFT calculations. The obtained platinum(II) complexes are effective catalysts for the hydrosilylation of alkynes and alkenes. Thus, the reaction of phenylacetylene with triethoxysilane leads to the formation of α- and β-(E)-vinylsilanes, generating TON's in the range of 103 to 104 and TOF's in the range of 102 to 103 h−1. Also, the cross-linked silicones, possessing the luminescence properties, were obtained by the hydrosilylatio…

LuminescenceHydrosilylationchemistry.chemical_element010402 general chemistry01 natural sciencesBiochemistryCatalysisCatalysisInorganic Chemistrychemistry.chemical_compoundAnti-cancer activityPolymer chemistryluminescenceMaterials ChemistryChelationPhysical and Theoretical Chemistrydiaminocarbene platinum(II) complexescatalysis010405 organic chemistryOrganic Chemistryhydrosilylation0104 chemical scienceschemistryPhenylacetyleneDiaminocarbene platinum(II) complexesHydrosilylationTriethoxysilaneanti-cancer activityLuminescencePlatinumSingle crystalJournal of Organometallic Chemistry
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