Search results for "nucleophilic"

showing 10 items of 158 documents

Cyclopentadienylmolybdenum(II) and -(III) complexes containing diene and allyl ligands. Part 4. Reactivity studies of the bisallyl complex CpMo(supin…

1998

Abstract Compound CpMo( η 3 -C 3 H 5 ) 2 , 3, has been synthesized from CpMoCl 4 and four equivalents of allylmagnesium bromide. While the compound is stable in donor solvents at room temperature, warming in refluxing MeCN induces the formation of 1,5-hexadiene by a metal-mediated allyl-allyl coupling process. Treatment of 3 with Bu t NC at room temperature affords CpMo( η 3 -C 3 H 5 )(Bu t NC) 2 , 4. A similar reduction with presumed allyl radical loss occurs for [CpMo( η 3 -C 3 H 5 )( η 4 -C 4 H 6 )] + , [1c] + , to afford [CpMo( η 4 -C 4 H 6 )(Bu t NC) 2 ] + , 5. Treatment of [1c] + with methyllithium affords two products, the major one (1c) corresponding to the one-electron reduction pa…

Allylmagnesium bromideNucleophilic additionDiene010405 organic chemistryStereochemistryProtonation010402 general chemistry01 natural sciencesMedicinal chemistry0104 chemical sciencesInorganic ChemistryPropenechemistry.chemical_compoundchemistry13. Climate actionMaterials Chemistry[CHIM.COOR]Chemical Sciences/Coordination chemistryMethyllithiumReactivity (chemistry)Physical and Theoretical ChemistryCis–trans isomerismPolyhedron
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Efficient Addition of Acid Enediolates to Epoxides

2004

We report new conditions to facilitate the addition of dianions of carboxylic acids to epoxides as an alternative method to the use of aluminum enolates. These conditions require the use of a sub-stoichiometric (10%) amount of amine for dianion generation and the previous activation of the epoxide with LiCl. Other Lewis acids have been shown to be less effective. Yields are good but only low diastereoselectivity is attained, which has not been controlled despite attempts at optimization. (© Wiley-VCH Verlag GmbH & Co. KGaA, 69451 Weinheim, Germany, 2004)

Alternative methodschemistry.chemical_compoundNucleophilic additionchemistryOrganic ChemistryEpoxideLithium chlorideRegioselectivityOrganic chemistryAmine gas treatingLewis acids and basesPhysical and Theoretical ChemistryEuropean Journal of Organic Chemistry
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Reactions of platinum(iv)-bound nitriles with isomeric nitroanilines: addition vs. substitution

2012

The platinum(IV) complex trans-[PtCl(4)(EtCN)(2)] reacts smoothly and under mild conditions with isomeric o-, m- and p-nitroanilines (NAs) yielding two different types of products depending on the NA isomer, viz. the nitroaniline complexes cis/trans-[PtCl(4)(NA)(2)] (cis/trans-1-3) and the amidine species trans-[PtCl(4){NH=C(Et)NHC(6)H(4)NO(2)-m}(EtCN)] (4), trans-[PtCl(4){NH=C(Et)NHC(6)H(4)NO(2)-m}(2)] (5) and trans-[PtCl(4){NH=C(Et)NHC(6)H(4)NO(2)-p}(EtCN)] (6). Complexes 4 and 5 undergo cyclometalation, furnishing mer-[PtCl(3){NH=C(Et)NHC(6)H(3)NO(2)-m}(EtCN)] (7) and mer-[PtCl(3){NH=C(Et)NHC(6)H(4)NO(2)-m}{NH=C(Et)NHC(6)H(3)NO(2)-m}] (8), respectively. Moreover, 8 both in the solid stat…

Aniline CompoundsNucleophilic additionOrganoplatinum CompoundsNitrileLigandStereochemistrySolid-statechemistry.chemical_elementMedicinal chemistryNitroanilineInorganic ChemistryAmidinechemistry.chemical_compoundIsomerismchemistryNitrilesMethanolPlatinumta116PlatinumDalton Transactions
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Recent advances in electrochemical meso- and β-functionalization of porphyrins and electrografting of diazonium porphyrins

2020

Abstract Recent studies on electrochemical meso- and β-functionalization of porphyrins and electrografting of diazonium porphyrin are presented. First, the electrochemical oxidative C–C coupling between porphyrins will be presented, followed by the intermolecular and intramolecular meso- and β-substitutions of porphyrins. Then, the latest results on diazonium porphyrin electrografting will be reviewed.

Anodic nucleophilic substitution02 engineering and technology010402 general chemistryPhotochemistryElectrochemistry01 natural sciencesDiazonium-porphyrin electrograftingAnalytical ChemistryPorphyrinchemistry.chemical_compoundOrganic electrosynthesis[CHIM.ANAL]Chemical Sciences/Analytical chemistryElectrochemistry[CHIM.COOR]Chemical Sciences/Coordination chemistry[CHIM.ORGA]Chemical Sciences/Organic chemistryIntermolecular forceElectropolymerization[CHIM.MATE]Chemical Sciences/Material chemistry021001 nanoscience & nanotechnologyPorphyrin0104 chemical sciencesCoupling (electronics)chemistryIntramolecular forceSurface modification0210 nano-technology
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Aryl azides formation under mild conditions: a kinetic study in some ionic liquid solutions.

2009

The kinetics of nucleophilic aromatic substitution of three nitrothiophene derivatives in different [1-butyl-3-methylimidazolium][N(3)]/ionic liquid binary mixtures was studied spectrophotometrically at 298 K. Ionic liquids differing for cation structure (imidazolium or pyrrolidinium) and for size, shape, and coordination ability of the anion ([BF(4)(-)], [PF(6)(-)], [SbF(6)(-)], and [NTf(2)(-)]) were used. Furthermore, in order to have a comparison with conventional organic solvents, the target reaction was also carried out in DMF solution at increasing concentration of NaN(3) or [bmim][N(3)]. Data collected show that the reaction occurs faster in DMF than in ionic liquid solution. Further…

ArylOrganic ChemistryInorganic chemistryionic liquids aryl azides kinetic measurementsLeaving groupSolventchemistry.chemical_compoundchemistryNucleophileNucleophilic aromatic substitutionHexafluorophosphateIonic liquidNucleophilic substitutionPhysical chemistryThe Journal of organic chemistry
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Ionic liquids/[bmim][N3] mixtures: promising media for the synthesis of aryl azides by SNAr

2008

The nucleophilic aromatic substitution of some activated aryl or heteroaryl halides has been performed in ionic liquid solution, using the 1-butyl-3-methylimidazolium azide as a nucleophile. The reaction course was studied varying the structures of both substrates and ionic liquids. In particular, in the latter case, the reaction of 2-bromo-5-nitrothiophene was carried out in five different ionic liquids ([bmim][BF 4], [bmim][PF 6], [bmim][NTf 2], [bm 2im][NTf 2], and [bmpyrr][NTf 2]). Finally, for all the substrates considered, a comparison with data obtained in MeOH solution in the presence of NaN 3 was also performed. Data collected indicate that in some cases it is possible to obtain ar…

ArylOrganic ChemistryMedicinal chemistryionic liquids aril azides task specific ionic liquidschemistry.chemical_compoundchemistryNucleophileNucleophilic aromatic substitutionIonic liquidNucleophilic substitutionOrganic chemistryMoleculeAzideSolvent effects
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Synthesis of aryl azides: A probe reaction to study the synergetic action of ultrasounds and ionic liquids

2011

Abstract The combined effect of ultrasounds and ionic liquids was used to perform the synthesis of aryl azides by nucleophilic aromatic substitution in ionic liquid/[1-butyl-3-methylimidazolium][N 3 ] binary mixtures. The ultrasounds efficiency was analyzed as a function of the substrate and of the ionic liquid structure. In the first case, both 6π and 10π electrons aryl halides were considered. As far as the ionic liquid structure is concerned, both aromatic and aliphatic ionic liquids were taken into account. Among aromatic cations, the effects due to different ability in giving hydrogen bond or π–π interactions were considered. The use of a geminal ionic liquid having an aromatic spacer …

AzidesAcoustics and UltrasonicsInorganic chemistryIonic LiquidsHalideChemistry Techniques SyntheticPhotochemistryIonInorganic Chemistrychemistry.chemical_compoundNucleophilic aromatic substitutionChemical Engineering (miscellaneous)Environmental ChemistryUltrasonicsRadiology Nuclear Medicine and imagingMolecular StructureGeminalHydrogen bondArylOrganic ChemistrySubstrate (chemistry)StereoisomerismSettore CHIM/06 - Chimica OrganicachemistryIonic liquidIonic liquids Ultrasounds Aryl azides Nucleophilic aromatic substitutionUltrasonics Sonochemistry
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Triazolopyridines. Part 8.1 Nucleophilic substitution reactions of 5-bromo[1,2,3]triazolo[5,1-a]isoquinoline and 7-bromo[1,2,3]-triazolo[1,5-a]pyridi…

1988

Abstract Nucleophilic substitution of 5-bromotriazoloisoquinoline (3) and of 7-bromo-3-methyltriazolopyridine (6) proceeds readily to give a range of 5-substituted triazoloisoquinolines (4a)-(4e), and of 7-substituted triazolopyridines (7a)-(7h) respectively. Triazoloisoquinolines have been converted into 1,3-disubstituted isoquinolines (11)-(13), (15), and (16), and triazolopyridines into 2,6-disubstituted pyridines (17)-(19). Of secondary amine nucleophiles, only piperidine reacted with 7-bromo-3-methyltriazolopyridine (6) to give the 7-substituted derivative (7g). A second product in this reaction was a 2,6-disubstituted pyridine (8); the similar compounds (20)-(24) were the only product…

Bicyclic moleculeOrganic ChemistryBiochemistryMedicinal chemistrychemistry.chemical_compoundchemistryNucleophileMorpholineDrug DiscoveryPyridineNucleophilic substitutionOrganic chemistryAmine gas treatingPiperidineIsoquinolineTetrahedron
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Nucleophilic substitutions on bromotriazolopyridines - an improved route to 2,6-disubstituted pyridines and to 1,3-disubstituted isoquinolines

1986

Abstract A regiospecific synthesis of 2,6-disubstituted pyridines and of 1,3-disubstituted isoquinolines is described.

Bicyclic moleculeOrganic ChemistryHydrazineSulfuric acidBiochemistryAcetic acidchemistry.chemical_compoundchemistryNucleophileDrug DiscoveryNucleophilic substitutionOrganic chemistryPiperidineBond cleavageTetrahedron Letters
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ChemInform Abstract: Synthesis of Bis(indolylmaleimide) Macrocycles

2000

The synthesis of a novel class of macrocyclic bis(indolylmaleimides) is reported. The key step involves the intermolecular connection of 2,2′-bridged indoles with 3,4-dibromo-2,5-dihydro-1H-2,5-pyrroledione (dibromomaleimide) derivatives. The bis(indolylmaleimides) afforded by this method were further processed by intramolecular nucleophilic substitution of the remaining bromo substituents forming flexible N-substituted macrocycles (9a-9j, 10a-10e) and, by connecting both maleimides, semi rigid macrocycles (7a-7xx).

Bis-indolylmaleimideChemistryIntramolecular forceIntermolecular forcePolymer chemistryNucleophilic substitutionGeneral MedicineChemInform
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