Search results for "Cross-coupling"

showing 10 items of 56 documents

Sequential Iron-Catalyzed C(sp2)–C(sp3) Cross-Coupling of Chlorobenzamides/Chemoselective Amide Reduction and Reductive Deuteration to Benzylic Alcoh…

2023

Benzylic alcohols are among the most important intermediates in organic synthesis. Recently, the use of abundant metals has attracted significant attention due to the issues with the scarcity of platinum group metals. Herein, we report a sequential method for the synthesis of benzylic alcohols by a merger of iron catalyzed cross-coupling and highly chemoselective reduction of benzamides promoted by sodium dispersion in the presence of alcoholic donors. The method has been further extended to the synthesis of deuterated benzylic alcohols. The iron-catalyzed Kumada cross-coupling exploits the high stability of benzamide bonds, enabling challenging C(sp2)–C(sp3) cross-coupling with alkyl Grign…

amidesironchemoselective reductioncross-couplingdeuterated compoundssequential catalysissodiumN–C cleavageiron catalysisbenzylic alcoholsMolecules
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Materiali catalitici a base di nanoparticelle di palladio immobilizzate su nanoforme di carbonio

2019

carbon nanostructurecarbon nanohornpalladium catalysihybrid materialcarbon nanotubeC-C cross-couplingimidazolium salt
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Synthesis of Globular Precursors

2015

o-Carborane (C2 B10 H12 ) was adapted to perform as the core of globular macromolecules, dendrons or dendrimers. To meet this objective, precisely defined substitution patterns of terminal olefin groups on the carborane framework were subjected to Heck cross-coupling reactions or hydroboration leading to hydroxyl terminated arms. These led to new terminal groups (chloro, bromo, and tosyl leaving groups, organic acid, and azide) that permitted ester production, click chemistry, and oxonium ring opening to be performed as examples of reactions that demonstrate the wide possibilities of the globular icosahedral carboranes to produce new dendritic or dendrimer-like structures. Polyanionic speci…

carboranesStereochemistrydendronsOrganic ChemistryGeneral ChemistryCatalysismultibranched compoundsHydroborationchemistry.chemical_compoundpolyanionsNucleophileTosylchemistryDendrimerClick chemistrycross-couplingCarboraneAzideOxonium ionta116Chemistry: A European Journal
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Nickel‐Catalyzed C(sp2)−C(sp3) Kumada Cross‐Coupling of Aryl Tosylates with Alkyl Grignard Reagents

2019

Aryl tosylates are an attractive class of electrophiles for cross‐coupling reactions due to ease of synthesis, low price, and the employment of C−O electrophiles, however, the reactivity of aryl tosylates is low. Herein, we report the Ni‐catalyzed C(sp2)−C(sp3) Kumada cross‐coupling of aryl tosylates with primary and secondary alkyl Grignard reagents. The method delivers valuable alkyl arenes by cross‐coupling with challenging alkyl organometallics possessing β‐hydrogens that are prone to β‐hydride elimination and homo‐coupling. The reaction is catalyzed by an air‐ and moisture stable‐Ni(II) precatalyst. A broad range of electronically‐varied aryl tosylates, including bis‐tosylates, underwe…

chemistry.chemical_classificationC(sp2)−C(sp3) cross-couplingArylchemistry.chemical_elementGeneral ChemistryAlkylationCatalysisCoupling (electronics)chemistry.chemical_compoundNickelnickelchemistryReagentPolymer chemistrycross-couplingKumada cross-couplingalkylationAlkylAdvanced Synthesis & Catalysis
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Heterogeneously catalyzed Suzuki-Miyaura conversion of broad scope

2012

The reaction tolerates a broad range of functional groups in the coupling partners and is usually performed in solution under homogeneous conditions at T ¢ 60 uC using 2–3 mol% catalytic amounts. The catalyst is often a Pd(0) complex with triarylphosphane ligands. 2 The catalytic cycle (Scheme 2) begins with the oxidative addition of an aryl halide to a Pd(0) species formed in situ to form an arylpalladium(II) halide intermediate. 3 Chloroarenes, especially nonactivated aryl chlorides, are notoriously less reactive due to the stability of the C–Cl bond (the relative reactivity of Ar–X is correlated to the respective bond dissociation energy: Ph–Cl: 96 kcal mol 21 ,P h–Br: 81 kcal mol 21 ,P …

chemistry.chemical_classificationGeneral Chemical EngineeringAryl halideArylchemistry.chemical_elementHomogeneous catalysisGeneral ChemistryOxidative additionCatalysiscross-coupling heterogeneous catalysis palladium Suzuki–Miyaurachemistry.chemical_compoundchemistryCatalytic cycleOrganic chemistryReactivity (chemistry)Palladium
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Synthesis of brominated tetrathiafulvalenes via phosphite-mediated cross-coupling

2010

The synthesis of polybrominated tetrathiafulvalenes (TTF-Brn, 2-4) containing 2-4 bromine atoms via phosphite-mediated cross-coupling of bromo-substituted 1,3-dithiole-2-thiones and 1,3-dithiole-2-ones is reported. © 2010 Elsevier B.V.

chemistry.chemical_classificationKetoneBromineHalogenationLithiationChemistryMechanical EngineeringMetals and AlloysCross reactionschemistry.chemical_elementHalogenationCondensed Matter PhysicsChemical synthesisElectronic Optical and Magnetic MaterialsCoupling (electronics)Brominated tetrathiafulvalenesPhosphite cross-couplingMechanics of MaterialsPolymer chemistryMaterials ChemistryOrganic chemistrySynthetic Metals
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An insight into the synthesis of novel aryl-substituted alicyclic β-amino acid derivatives through substrate-directed palladium-catalysed regio- and …

2015

Novel aryl-substituted alicyclic β-amino acid derivatives were synthesized through substrate-determined palladium-catalysed cross-coupling of aryl iodides with five- or six-membered cycloalkene β-amino esters. The arylations were investigated with different catalysts, solvents, bases and aryl halides, and with some cyclohexene 2-aminocarboxylate isomers. The stereochemistry and the position of the ring olefinic bond of the starting 2-aminocycloalkanecarboxylate influenced the coupling reaction, and predetermined the structure of the arylated product.

chemistry.chemical_classificationsynthesisGeneral Chemical EngineeringArylCyclohexenechemistry.chemical_elementGeneral ChemistryRing (chemistry)Medicinal chemistryCoupling reactionCatalysischemistry.chemical_compoundAlicyclic compoundchemistrycross-couplingOrganic chemistryta116CycloalkenePalladiumRSC Advances
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Characterization of Nanostructured SilicaCat Pd0

2011

Structural investigation on nanostructured SiliaCat Pd0 palladium catalyst sheds light into the origins of the remarkable activity of these new catalytic materials.

chemistry.chemical_elementNanoparticleGeneral ChemistryOrmosilCatalysisCharacterization (materials science)Catalysischemistry.chemical_compoundchemistryChemical engineeringPalladium ORMOSIL SiliaCat Cross-coupling NanoparticlePalladium catalystOrganometallic chemistryPalladium
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Palladium-based catalytic systems for the synthesis of conjugated enynes by Sonogashira reactions and related alkynylations

2007

Conjugated alkynes are recurring building blocks in natural products, a wide range of industrial intermediates, pharmaceuticals and agrochemicals, and molecular materials for optics and electronics. The palladium-catalyzed cross-coupling between sp(2)-hybridized carbon atoms of aryl, heteroaryl, and vinyl halides with sp-hybridized carbon atoms of terminal acetylenes is one of the most important developments in the field of alkyne chemistry over the past 50 years. The seminal work of the 1970s has initiated an intense search for more general and reliable reaction conditions. The interest in the catalytic activation of demanding substrates, the need to minimize the consumption of depletive r…

chemistry.chemical_elementSonogashira couplingAlkyneHalideConjugated systemHeterogeneous catalysis010402 general chemistryalkynes01 natural sciencesCatalysisCatalysischemistry.chemical_compound[ CHIM.CATA ] Chemical Sciences/CatalysisOrganometallic Compoundscross-couplingOrganic chemistryComputingMilieux_MISCELLANEOUSchemistry.chemical_classificationMolecular Structure010405 organic chemistryArylStereoisomerismGeneral ChemistryGeneral Medicine[CHIM.CATA]Chemical Sciences/Catalysissonogashira reactionspalladiumCombinatorial chemistry0104 chemical sciencesheterogeneous catalysischemistryCarbonPalladium
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Cross-coupling reactions of organoborons with organic halides

2011

cross-coupling reactionsorgaaninen kemiaboorisynthesis of arylbenzothiazole derivativesboronic derivativesreaktiotorganic halides
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