Search results for "REGIOSELECTIVITY"

showing 10 items of 298 documents

Synthesis of oxygenated spongiane-type diterpenoids from carvone

2002

Abstract A new diastereoselective approach to oxygenated spongiane diterpenes starting from ( R )-(−)-carvone is described. The carvone is incorporated as the B ring in the final spongiane framework using a B→AB→ABC→ABCD approach, which involves an intramolecular Diels–Alder reaction and the regioselective ring-opening of a dihydrofuran ring as key synthetic steps. The structure of the key intermediate in this approach has been verified by X-ray crystallography.

Carvonechemistry.chemical_compoundChemistryStereochemistryIntramolecular forceOrganic ChemistryDrug DiscoveryRegioselectivityRing (chemistry)BiochemistryTetrahedron Letters
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Structural Characterization of Isomeric Dimers from the Oxidative Oligomerization of Catechol with a Biomimetic Catalyst

2007

In a previous paper, it has been reported about the formation of catechol di-, tri- and tetramers within an oxidative polymerization catalyzed by synthetic water-soluble iron-porphyrin as an efficient alternative to bio-labile natural peroxidase. It has also been demonstrated the occurrence of both C-C and C-O-C coupling mechanisms. However, since the coupling products were determined by mass spectroscopy, the exact bonding position could not have been precisely ascertained for the C-C bonded isomeric dimers that are the dominant products of catechol oligomerization. Therefore, here isolation and characterization of catechol isomeric dimers, obtained by oxidative coupling under the catalysi…

CatecholPolymers and PlasticsDimerMolecular MimicrySettore AGR/13 - Chimica AgrariaCatecholsRegioselectivityBioengineeringOxidative phosphorylationOxidative cathecolOligomerCatalysisCatalysisBiomaterialschemistry.chemical_compoundIsomerismPhenolschemistryPolymer chemistryMaterials ChemistryMoleculeOxidative coupling of methaneDimerizationOxidation-Reduction
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Metal-free regioselective C–C bond cleavage in 1,3,5-triazine derivatives of β-diketones

2014

Metal-free regioselective activation of a carbon–carbon bond in 1,3,5-triazine derivatives of β-diketones is easily achieved, in the absence of a catalyst, with the assistance of intramolecular hydrogen bonding.

ChemistryHydrogen bondRegioselectivityGeneral ChemistryCatalysisCatalysischemistry.chemical_compound135-TriazineMetal freeIntramolecular forcePolymer chemistryMaterials ChemistryOrganic chemistryta116Bond cleavageNew J. Chem.
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Inside Cover: Regioselective Metal‐ and Reagent‐Free Arylation of Benzothiophenes by Dehydrogenative Electrosynthesis (Angew. Chem. Int. Ed. 40/2018)

2018

ChemistryINTRegioselectivityGeneral ChemistryElectrosynthesisElectrochemistryCatalysisMetalC c couplingvisual_artReagentPolymer chemistryvisual_art.visual_art_mediumCover (algebra)Angewandte Chemie International Edition
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ChemInform Abstract: Leaving Group and Regioselectivity Switches in the Aminoalkylation Reaction of Indoles and Related Heterocycles with α-Amido Sul…

2013

Two methods are presented which allow the regioselective C- or N-aminoalkylation of indoles, pyrroles or azaindoles.

ChemistryLeaving groupRegioselectivityGeneral MedicineMedicinal chemistryPyrrole derivativesChemInform
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ChemInform Abstract: Indirect Regioselective Heteroarylation of Indoles Through a Friedel-Crafts Reaction with (E)-1,4-Diaryl-2-buten-1,4-diones.

2010

Abstract A two-step synthesis of 3-heteroaryl indoles has been developed. The first step of the sequence involves a Friedel–Crafts alkylation of indoles with 1,4-diaryl-2-buten-1,4-diones to give the corresponding indoles bearing a 1,4-dicarbonyl moiety. The reaction is catalyzed by InCl 3 and takes place with good yields. Cyclization of the diones under different Paal–Knorr conditions allows to prepare indoles substituted at the C3 position with 3-furanyl, 3-pyrrolyl- and 3-thienyl moieties.

ChemistryMoietyRegioselectivityGeneral MedicineAlkylationThiophene derivativesMedicinal chemistryFriedel–Crafts reactionPyrrole derivativesCatalysisChemInform
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Indirect regioselective heteroarylation of indoles through a Friedel–Crafts reaction with (E)-1,4-diaryl-2-buten-1,4-diones

2009

Abstract A two-step synthesis of 3-heteroaryl indoles has been developed. The first step of the sequence involves a Friedel–Crafts alkylation of indoles with 1,4-diaryl-2-buten-1,4-diones to give the corresponding indoles bearing a 1,4-dicarbonyl moiety. The reaction is catalyzed by InCl 3 and takes place with good yields. Cyclization of the diones under different Paal–Knorr conditions allows to prepare indoles substituted at the C3 position with 3-furanyl, 3-pyrrolyl- and 3-thienyl moieties.

ChemistryOrganic ChemistryDrug DiscoveryRegioselectivityOrganic chemistryMoietyAlkylationBiochemistryFriedel–Crafts reactionCatalysisTetrahedron
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A DFT study of the mechanism of Brønsted acid catalysed Povarov reactions

2015

Abstract The molecular mechanism of the Bronsted acid (BA) catalysed Povarov reaction of N -phenyl- C -methoxycarbonyl imine with a methylenecyclopropane (MCP) has been investigated using DFT methods at the MPWB1K/6-31G(d) level. This BA catalysed Povarov reaction is a domino process initialised by the formation of a cationic intermediate which experiences a quick intramolecular Friedel–Crafts reaction yielding the final tetrahydroquinoline. Protonation of the imine nitrogen atom notably increases the electrophilicity of the corresponding species, accelerating the reaction through ionic processes. Analysis of the Parr functions in the initial nucleophilic attack of MCP to the protonated imi…

ChemistryOrganic ChemistryImineRegioselectivityProtonationPhotochemistryMethylenecyclopropaneBiochemistryMedicinal chemistrychemistry.chemical_compoundNucleophileDrug DiscoveryElectrophilePovarov reactionBrønsted–Lowry acid–base theoryTetrahedron
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Addition of dianions of carboxylic acids to imines. Influence of the acid in the outcome of the reaction

2009

Gil Grau, Salvador, Salvador.Gil@uv.es, Parra Alvarez, Margarita, Margarita.Parra@uv.es, Rodriguez Abad, Pablo, roapa@alumni.uv.es

ChemistryOrganic ChemistryRegioselectivityOrganic chemistryArkivoc
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Reactivity and Selectivity of Ortho-Metalated Rhodium(II) Complexes in C−H Insertion Reactions of α-Diazo Compounds

1998

Regioselective intramolecular C−H insertion reactions of α-diazo β-keto esters and α-diazo ketones are mediated by Rh2[OOCR]4-x[PC]x (x = 1, 2; PC = ortho-metalated phosphine; R = CH3, C3F7). In particular, the intramolecular transformation of 1-diazo-5-methyl-3-propyl-2-hexanone catalyzed by Rh2[OOCCH3]2[PC]2 (PC = (C6H4)P(C6H5)2, head-to-tail (H−T) configuration) afforded only the tertiary C−H insertion product. By comparison, no C−H insertion reaction was promoted by doubly metalated complexes with a head-to-head (H−H) configuration. Rh2[OOCR]3[PC] compounds were found to be less suited for these type of reactions.

ChemistryOrganic ChemistryRegioselectivitychemistry.chemical_elementMedicinal chemistryRhodiumInorganic Chemistrychemistry.chemical_compoundInsertion reactionIntramolecular forceDiazoReactivity (chemistry)Physical and Theoretical ChemistrySelectivityPhosphineOrganometallics
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