Search results for "cross-coupling"

showing 10 items of 56 documents

Naphthalene-2,6-diyl bis(4-methylbenzenesulfonate)

2018

The complete molecule of the title compound, C24H20O6S2, is generated by a crystallographic inversion centre at the middle of the naphthalene ring system. The dihedral angle between the naphthalene ring system and the pendant benzene ring is 10.23 (6)° and the C—S—O—C torsion angle is −172.05 (10)°. In the crystal, weak C—H...O interactions link the molecules into (10-1) sheets.

crystal structure010405 organic chemistryChemistryGeneral MedicineCrystal structureDihedral angle010402 general chemistryRing (chemistry)01 natural sciencesCoupling reactioncrosscoupling reactions0104 chemical sciencesCrystalCrystallographychemistry.chemical_compoundSulfonatecross-coupling reactionslcsh:QD901-999lcsh:CrystallographyPhysics::Chemical PhysicsBenzenetosylatesNaphthaleneIUCrData
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4-Chloronaphthalen-1-yl 4-methylbenzenesulfonate

2018

In the title compound, C17H13ClO3S, the naphthalene ring system and the benzene ring of the tosylate substituent are inclined to one another by 55.32 (5)°. The crystal structure features weak intermolecular C—H...O hydrogen bonds, one of which forms inversion dimers. Additional C—H...O hydrogen bonds and weak Cl...Cl halogen bonds stack the molecules along the b-axis direction.

crystal structure010405 organic chemistryChemistryHydrogen bondSubstituentGeneral MedicineCrystal structure010402 general chemistryRing (chemistry)01 natural sciencesMedicinal chemistryCoupling reactioncrosscoupling reactions0104 chemical scienceschemistry.chemical_compoundSulfonatecross-coupling reactionsHalogenlcsh:QD901-999lcsh:CrystallographyPhysics::Chemical PhysicsBenzenetosylatesIUCrData
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3,5-Dimethoxyphenyl 4-methylbenzenesulfonate

2017

Molecules of the title compound, C15H16O5S, are composed of a 3,5-dimethoxyphenyl moiety substituted with a toluene-4-sulfonate group. The dihedral angle between two aromatic rings is 57.23 (4)°. In the crystal, molecules are connected by weak C—H...O hydrogen bonds and S...O van der Waals interactions.

crystal structure010405 organic chemistryHydrogen bondStereochemistryChemistryAromaticityCrystal structuretosyl­atesDihedral angle010403 inorganic & nuclear chemistry01 natural sciencesMedicinal chemistryCoupling reaction0104 chemical sciencessymbols.namesakechemistry.chemical_compoundSulfonatecross-coupling reactionssymbolsMoietyvan der Waals forceIUCrData
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3,5-Bis(trifluoromethyl)phenyl 4-methylbenzenesulfonate

2017

Molecules of the title compound, C15H10F6O3S, are composed of 3,5-bis(trifluoromethyl)phenyl substituted with a toluene-4-sulfonate group. The dihedral angle between two aromatic moieties is 45.10 (5)°. In the crystal, molecules are connected by weak C—H...O and C—H...F contacts. One of the trifluoromethyl groups is disordered.

crystal structure010405 organic chemistryMeth-Crystal structuretosyl­atesDihedral angle010402 general chemistry01 natural sciencesCoupling reaction0104 chemical sciencesCrystalchemistry.chemical_compoundSulfonatecross-coupling reactionschemistryGroup (periodic table)Polymer chemistryMethyl benzeneIUCrData
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On the mechanistic behavior of highly efficient palladium-tetraphosphine catalytic systems for cross-coupling reactions: first spectroscopic and elec…

2008

Electrochemical studies carried out in conjunction with 31P NMR spectroscopy on the palladium(II)/palladium(0) halogeno complexes of the tetraphosphine 1,1′,2,2′-tetrakis(diphenylphosphino)-4,4′-di...

crystal structureDenticityredox reactionoxidative additiontetraphosphinechemistry.chemical_elementmechanism010402 general chemistryElectrochemistryPhotochemistry01 natural sciencesCoupling reactionCatalysisInorganic Chemistry[ CHIM.CATA ] Chemical Sciences/Catalysiscross-coupling reactionsferrocenylpolyphosphine complexesPhysical and Theoretical ChemistryComputingMilieux_MISCELLANEOUSelectrochemical studies010405 organic chemistryChemistryOrganic Chemistry[CHIM.CATA]Chemical Sciences/CatalysispalladiumCombinatorial chemistryOxidative addition0104 chemical sciences3. Good healthcatalytic systemsreaction kinetics31p nmr spectroscopyPalladium
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Iron-Catalyzed C–O Bond Activation: Opportunity for Sustainable Catalysis

2017

Oxygen-based electrophiles have emerged as some of the most valuable cross-coupling partners in organic synthesis due to several major strategic and environmental benefits such as abundance and potential to avoid toxic halide waste. In this context, iron-catalyzed C–O activation/cross-coupling holds particular promise to achieve sustainable catalytic protocols due to its natural abundance, inherent low toxicity, an excellent economic and ecological profile. Recently, tremendous progress has been achieved in the development of new methods for functional group tolerant iron-catalyzed cross-coupling reactions by selective C–O cleavage. These methods establish highly attractive alternatives to …

green chemistrycross-couplingC–O activationsustainabilityiron catalysisChemsuschem
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Cross-Linked Imidazolium Salts as Scavengers for Palladium.

2014

Five imidazolium-based materials have been synthesised and used for the first time as palladium scavengers. Radical reactions of suitable bis-vinylimidazolium salts led to a series of insoluble materials through homo-polymerisation, immobilisation with a 3-mercaptopropyl-modified silica gel or co-polymerisation with ethylene glycol dimethylacrylate. These materials were screened as palladium scavengers with a set of palladium(0) and palladium(II) compounds in different solvents and at different starting amounts of palladium. In many cases, residual amounts of palladium were lower than 5 ppm, as requested for the manufacture of active pharmaceutical ingredients and fine chemicals. The applic…

inorganic chemicalsActive ingredientSilica gelchemistry.chemical_elementGeneral ChemistrySettore CHIM/06 - Chimica OrganicaScavenger (chemistry)chemistry.chemical_compoundchemistrySuzuki reactionIonic liquidOrganic chemistryEthylene glycolcross-coupling imidazolium salts ionic liquids palladium supported catalystsPalladiumChemPlusChem
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3,4′,5,5′-Tetramethoxy-2′-methylbiphenyl-4-ol

2019

The asymmetric unit of the title compound, C17H20O5, contains two independent molecules, A and B, with similar geometries [dihedral angles between the phenyl rings = 56.19 (8) and 54.98 (7)°, respectively]. Intramolecular O—H...O hydrogen bonds occur in both molecules. In the crystal, the A molecules form [1\overline{1}0] chains linked by O—H...O hydrogen bonds from the hydroxyl group to one of the methoxy O atoms. The B molecules form O—H...O hydrogen bonds to the hydroxyl O atoms of the A molecules and thus act as fixed spacers between the chains of molecule A. Some weak C—H...O contacts are also present.

inorganic chemicalsbiaryl systemcrystal structurebiology010405 organic chemistryHydrogen bondMeth-Crystal structureDihedral angle010402 general chemistrybiology.organism_classification01 natural scienceshumanities0104 chemical sciencesCrystalchemistry.chemical_compoundCrystallographychemistryGroup (periodic table)cross-couplinglcsh:QD901-999Tetralcsh:CrystallographyPhysics::Chemical PhysicsIUCrData
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Thieme Chemistry Journals Awardees – Where Are They Now? Molybdenum(V)-Mediated Synthesis of Nonsymmetric Diaryl and Aryl Alkyl Chalcogenides

2017

Oxidative chalcogenation reaction using molybdenum(V) reagents provides fast access to a wide range of nonsymmetric aryl sulfides and selenides. The established protocol is tolerated by a variety of labile functions, protecting groups, and aromatic heterocycles. In particular, when labile moieties are present, the use of molybdenum(V) reagents provides superior yields compared to other oxidants.

inorganic chemicalschemistry.chemical_classificationmolybdenum pentachloridedisulfides010405 organic chemistryArylOrganic Chemistrychemistry.chemical_elementMolybdenum pentachloride010402 general chemistryoxidative coupling01 natural sciences0104 chemical scienceschemistry.chemical_compoundchemistryMolybdenumReagentcross-couplingOrganic chemistryOxidative coupling of methaneC–S bond formationAlkylSynlett
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Cyclic Sulfoximine and Sulfonimidamide Derivatives by Copper‐Catalyzed Cross‐Coupling Reactions with Elemental Sulfur

2023

Copper-catalyzed cross-coupling reactions of α-bromoaryl NH-sulfoximines with elemental sulfur lead to benzo[d][1,3,2]dithiazole-1-oxides, which represent a new class of three-dimensional heterocycles. The reactions proceed under mild conditions showing good functional group and heterocycle tolerance. By imination/oxidation, the initial cross-coupling products can be converted to unprecedented cyclic sulfonimidamides derivatives. Furthermore, a seven-membered heterocycle was obtained by a ruthenium-catalyzed ring-expansion with ethyl propiolate. peerReviewed

kemiallinen synteesicopper catalysissulfonimidamideskatalyytitcross-coupling reactionssulfoximineskatalyysirikkiyhdisteetkupariGeneral Chemistryheterosykliset yhdisteetrikkielemental sulfurAdvanced Synthesis & Catalysis
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