Search results for "Electrophile"

showing 10 items of 258 documents

[pi]-strain-induced electrophilicity in small cycloalkynes: a dft analysis of the polar cycloaddition of cyclopentyne towards enol ethers

2006

Small cycloalkynes possess a π-strain-induced electrophilicity related to the bending of the C–Csp–Csp bond angle. For cyclopentyne and benzyne, the electrophilicity index defined in the context of density functional theory gives a coherent rationale for the reactivity of these cycloalkynes, which may act as electrophiles in polar cycloaddition reactions toward enol ethers. (© Wiley-VCH Verlag GmbH & Co. KGaA, 69451 Weinheim, Germany, 2006)

Organic ChemistryContext (language use)PhotochemistryEnolAryneCycloadditionchemistry.chemical_compoundMolecular geometrychemistryComputational chemistryElectrophileReactivity (chemistry)Density functional theoryPhysical and Theoretical Chemistry
researchProduct

A DFT study of the ionic [2+2] cycloaddition reactions of keteniminium cations with terminal acetylenes

2015

Abstract The molecular mechanism of the ionic [2+2] cycloaddition (I-22CA) reactions of a keteniminium cation (KC) with acetylene and propyne has been investigated using DFT methods at the MPWB1K/6-311G(d,p) level. These I-22CA reactions take place via a two-step mechanism. The first step is the nucleophilic attack of these alkynes on the central carbon of KC, yielding cyclopropene intermediates, while the second step corresponds to the conversion of these intermediates into more stable cyclobuteniminium cations (CCs). The first step is the rate-determining step, while the second step is responsible for the formation of the two regioisomeric CCs experimentally observed in the reaction with …

Organic ChemistryIonic bondingCyclopropenePropynePhotochemistryBiochemistryCycloadditionchemistry.chemical_compoundNucleophilechemistryAcetyleneComputational chemistryDrug DiscoveryElectrophileReactivity (chemistry)Tetrahedron
researchProduct

Modular Phosphole-Methano-Bridged-Phosphine(Borane) Ligands. Application to Rhodium-Catalyzed Reactions

2012

The synthesis of the phospholyl(phosphinoborane)methane air- and moisture-stable hybrid ligands 4a–f, starting from 1-phenylphospholes 1a–d, was performed via P–C bond coupling on the methano bridge. Two strategies were investigated, according to the phospholyl moiety used as a nucleophilic or an electrophilic reagent. In the first pathway, the phospholyl anions react with the easily available (chloromethyl)diphenylphosphine–borane 3 to afford ligands 4a–d in 29–67% isolated yields. In the second pathway, the phospholyl(dicyclohexylphosphinoborane)methane ligands 4e,f were synthesized in 18–23% yields, through a nucleophilic substitution on the cyanophosphole. Removal of the BH3 moiety on 4…

Organic ChemistryPhospholeDABCOBoraneMedicinal chemistryInorganic Chemistrychemistry.chemical_compoundchemistryNucleophileElectrophileNucleophilic substitutionOrganic chemistryMoietyPhysical and Theoretical ChemistryPhosphineOrganometallics
researchProduct

Boron–nitrogen substituted dihydroindeno[1,2-b]fluorene derivatives as acceptors in organic solar cells

2019

The electrophilic borylation of 2,5-diarylpyrazines results in the formation of boron–nitrogen doped dihydroindeno[1,2-b]fluorene which can be synthesized using standard Schlenk techniques and worked up and handled readily under atmospheric conditions. Through transmetallation via diarylzinc reagents a series of derivatives were synthesized which show broad visible to near-IR light absorption profiles that highlight the versatility of this BN substituted core for use in optoelectronic devices. The synthesis is efficient, scalable and allows for tuning through changes in substituents on the planar heterocyclic core and at boron. Exploratory evaluation in organic solar cell devices as non-ful…

PAH-yhdisteetMaterials scienceOrganic solar cellchemistry.chemical_elementFluoreneOrganoboron chemistry010402 general chemistryPhotochemistry7. Clean energy01 natural sciencesBorylationCatalysischemistry.chemical_compoundTransmetalationMaterials ChemistryBoronaurinkokennot010405 organic chemistryDopingMetals and AlloysGeneral Chemistry0104 chemical sciencesSurfaces Coatings and FilmsElectronic Optical and Magnetic MaterialschemistryElectrophileCeramics and CompositesvalokemiaChemical Communications
researchProduct

Quantitative characterization of the global electrophilicity power of common diene/dienophile pairs in Diels–Alder reactions

2002

Abstract The global electrophilicity power, ω, of a series of dienes and dienophiles commonly used in Diels–Alder reactions may be conveniently classified within a unique relative scale. Useful information about the polarity of transition state structures expected for a given reaction may be obtained from the difference in the global electrophilicity power, Δω, of the diene/dienophile interacting pair. Thus the polarity of the process can be related with non-polar (Δω small, pericyclic processes) and polar (Δω big, ionic processes) mechanisms.

Pericyclic reactionDienePolarity (physics)ChemistryOrganic ChemistryIonic bondingPhotochemistryBiochemistryCharacterization (materials science)chemistry.chemical_compoundComputational chemistryDrug DiscoveryElectrophileDiels alderDensity functional theoryTetrahedron
researchProduct

Origin of the synchronicity in bond formation in polar Diels-Alder reactions: an ELF analysis of the reaction between cyclopentadiene and tetracyanoe…

2012

[EN] The origin of the synchronicity in C-C bond formation in polar Diels-Alder (P-DA) reactions involving symmetrically substituted electrophilic ethylenes has been studied by an ELF analysis of the electron reorganization along the P-DA reaction of cyclopentadiene (Cp) 4 with tetracyanoethylene (TCE) 10 at the B3LYP/6-31G* level. The present study makes it possible to establish that the synchronicity in C-C bond formation in P-DA reactions is controlled by the symmetric distribution of the electron-density excess reached in the electrophile through the charge transfer process, which can be anticipated by an analysis of the spin electron-density at the corresponding radical anion. The ELF …

Pericyclic reactionEthyleneCyclopentadieneINGENIERIA MECANICAOrganic ChemistryElectronTetracyanoethylenePhotochemistryBiochemistryIonchemistry.chemical_compoundchemistryElectrophilePolarPhysical and Theoretical Chemistry
researchProduct

Diastereoselective synthesis of substituted 2-phenyltetrahydropyrans as useful precursors of aryl C-glycosides via selenoetherification

2004

The cyclization of several substituted 5-phenyl-pent-4-en-1-ols with selenium electrophiles along some mechanistic considerations is discussed. In particular, an efficient diastereoselective synthesis of a 2,3,5,6-tetrasubstitued tetrahydropyran is reported. These findings open an interesting approach: the use of chiral selenium electrophiles for cyclization of chiral substrates. The cyclized products are useful starting material for the synthesis of D- or L-aryl C-glycosides.

PharmacologyC glycosidesdiastereoselctive synthesis selenoetherificationArylOrganic Chemistrychemistry.chemical_elementTetrahydropyranSettore CHIM/06 - Chimica OrganicaAnalytical Chemistrychemistry.chemical_compoundchemistryaryl C-glycosidesElectrophileOrganic chemistrySelenium
researchProduct

The Chemistry of [1,2,3]Triazolo[1,5- a] pyridines

2003

The reactivity of [1,2,3]triazolo[1,5-a]pyridines 1 is described. Triazolopyridines react with electrophiles in two contrasting ways, giving 3-substituted triazolopyridines 2, or products 3, resulting from triazolo ring opening with loss of molecular nitrogen. The triazolopyridines can be lithiated at -40 degrees C by lithium diisopropylamide in ether giving regiospecifically the 7-lithio derivative. Bromotriazolopyridines have activation towards nucleophilic substitution at position 5 and 7, and benzenoid inertness at position 6. The parent compound 1a is easily hydrogenated giving tetrahydrotriazolopyridine 11a in high yield; when the triazolopyridines have substituents, the hydrogenation…

PharmacologyPhotochemistryPyridinesSubstituentPyridinium CompoundsEtherGeneral MedicineTriazolesRing (chemistry)Lithium diisopropylamidechemistry.chemical_compoundchemistryCyclizationDrug DiscoveryElectrophileSolventsNucleophilic substitutionOrganic chemistryReactivity (chemistry)HydrogenationDerivative (chemistry)Journal of Enzyme Inhibition and Medicinal Chemistry
researchProduct

The oxidation of alkanes with dimethyldioxirane; a new mechanistic insight

1997

Abstract Primary kinetic isotope effects were measured for the oxidation of cyclohexane and methylcyclohexane with DMDO in solution and in the gas phase. These experiments suggest an electrophilic oxygen insertion mechanism for the oxidation of alkanes by DMDO.

Primary (chemistry)CyclohexaneOrganic Chemistrychemistry.chemical_elementPhotochemistryBiochemistryOxygenchemistry.chemical_compoundchemistryMechanism (philosophy)Drug DiscoveryKinetic isotope effectElectrophileMethylcyclohexaneDimethyldioxiraneTetrahedron Letters
researchProduct

Synthesis of Densely Functionalised 5-Halogen-1,3-oxazin-2-ones byHalogen-Mediated Regioselective Cyclisation of N-Cbz-ProtectedPropargylic Amines: A…

2013

A very efficient synthesis of 5-halogen-1,3-oxazin-2-ones has been accomplished by the halocyclisation reaction of chiral nonracemic N-carbobenzyloxy (N-Cbz)-protected propargylic amines by using I-2, Br-2 and Cl-2 as electrophile sources. The nature of the halogen influences the reaction time and yield. However, in all cases the reaction is totally regioselective taking place through a 6-endo-dig process regardless of the nature of the halogen and of the substituents in the starting material. To rationalise the experimental results, theoretical studies at the B3LYP/6-311G* level have been performed.

Propargylic aminesReaction mechanismChemistryReaction mechanismsOrganic ChemistryRegioselectivityGeneral ChemistryCatalysisOxazinonesDensity functional calculationsRegioselectivityHalocyclisationYield (chemistry)FISICA APLICADAHalogenElectrophileOrganic chemistry
researchProduct