Search results for "coupling"

showing 10 items of 1862 documents

A Decade of Electrochemical Dehydrogenative C,C-Coupling of Aryls.

2019

The importance of sustainable and green synthetic protocols for the synthesis of fine chemicals has rapidly increased during the last decades in an effort to reduce the use of fossil fuels and other finite resources. The replacement of common reagents by electricity provides a cost- and atom-efficient, environmentally friendly, and inherently safe access to novel synthetic routes. The selective formation of carbon-carbon bonds between two distinct substrates is a crucial tool in organic chemistry. This fundamental transformation enables access to a broad variety of complex molecular architectures. In particular, the aryl-aryl bond formation has high significance for the preparation of organ…

010405 organic chemistryChemistrybusiness.industryFossil fuelMolecular ConformationGeneral MedicineGeneral ChemistryElectrochemical Techniques010402 general chemistryElectrochemistry01 natural sciencesCombinatorial chemistryHydrocarbons Aromatic0104 chemical sciencesC c couplingHydrogenationbusinessAccounts of chemical research
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2-Methyltetrahydrofuran: A Green Solvent for Iron-Catalyzed Cross-Coupling Reactions

2018

Iron‐catalyzed cross‐coupling reactions allow sustainable formation of C−C bonds using cost‐effective, earth‐abundant base‐metal catalysis for complex syntheses of pharmaceuticals, natural products, and fine chemicals. The major challenge to maintain full sustainability of the process is the identification of green and renewable solvents that can be harnessed to replace the conventional solvents for this highly attractive reaction. Herein, iron‐catalyzed cross‐coupling of aryl chlorides and tosylates with challenging organometallic reagents possessing β‐hydrogens is found to proceed in good to excellent yields with the green, sustainable, and eco‐friendly 2‐methyltetrahydrofuran (2‐MeTHF) a…

010405 organic chemistryGeneral Chemical EngineeringAryl2-MethyltetrahydrofuranHomogeneous catalysis010402 general chemistry01 natural sciencesCombinatorial chemistryCoupling reaction0104 chemical sciencesCatalysisSolventchemistry.chemical_compoundGeneral EnergychemistryReagentFunctional groupEnvironmental ChemistryGeneral Materials ScienceChemSusChem
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Dicopper(II) pyrazolenophanes: Ligand effects on their structures and magnetic properties

2016

Abstract The use of simple pyrazolate anions and related polychelating acyclic or macrocyclic pyrazolate derivatives as bridging ligands, and occasionally additional blocking ligands, has led to the stereospecific Cu II -mediated self-assembly of both homo- and heteroleptic di-μ-pyrazolatodicopper(II) complexes of the metallacyclophane type, so-called dicopper(II) pyrazolenophanes. Besides their unique molecular conformation features and binding abilities toward both neutral molecules and charged anionic species, which have illustrated the putative role of weak intramolecular π–π stacking, hydrogen bonding, and coordinative interactions in the self-assembling process, dicopper(II) pyrazolen…

010405 organic chemistryHydrogen bondStereochemistryChemistryLigandStacking010402 general chemistry01 natural sciencesInductive couplingPlanarity testing0104 chemical sciencesInorganic ChemistryMetalvisual_artIntramolecular forceMaterials Chemistryvisual_art.visual_art_mediumMoleculePhysical and Theoretical ChemistryCoordination Chemistry Reviews
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Reagent- and Metal-Free Anodic C-C Cross-Coupling of Aniline Derivatives.

2017

The dehydrogenative cross-coupling of aniline derivatives to 2,2′-diaminobiaryls is reported. The oxidation is carried out electrochemically, which avoids the use of metals and reagents. A large variety of biphenyldiamines were thus prepared. The best results were obtained when glassy carbon was used as the anode material. The electrosynthetic reaction is easily performed in an undivided cell at slightly elevated temperature. In addition, common amine protecting groups based on carboxylic acids were employed that can be selectively removed under mild conditions after the cross-coupling, which provides quick and efficient access to important building blocks featuring free amine moieties.

010405 organic chemistryInorganic chemistryGeneral ChemistryGlassy carbon010402 general chemistry01 natural sciencesCatalysis0104 chemical sciencesAnodechemistry.chemical_compoundAnilinechemistryMetal freeReagentPolymer chemistryCoupling (piping)Amine gas treatingAngewandte Chemie (International ed. in English)
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CuII2, CuII4 and CuII6 complexes with 3-(2-pyridyl)pyrazolate. Structure, magnetism and core interconversion

2019

Abstract Reactions of stoichiometric amounts of L1(−) (HL1 = 3-(2-pyridyl)pyrazole) with [Cu(H2O)6](ClO4)2, with or without PhCO2−, in MeOH or N,N′-dimethylformamide (dmf), led to the isolation of three copper(II) complexes of varying nuclearity, [CuII2(L1)2(ClO4)2(MeOH)2] (1), [CuII4(L1)4(O2CPh)2(MeOH)4](ClO4)2·2H2O (2) and [CuII6(L1)6(O2CPh)2(ClO4)2(dmf)4](ClO4)2·2dmf·2H2O (3). Structural analysis reveals two centrosymmetric four-coordinate {CuII(L1)(ClO4)(MeOH)} units are dipyrazolate-bridged in 1, giving rise to a square-pyramidal (SP; τ = 0.13) coordination to the CuII ion. In 2, two centrosymmetric four-coordinate dipyrazolate-bridged {CuII2(μ-L1)2(MeOH)2}2+ units in two layers are he…

010405 organic chemistryMagnetismchemistry.chemical_elementPyrazole010402 general chemistry01 natural sciencesCopperAntiferromagnetic coupling0104 chemical sciencesIonInorganic ChemistrySolventchemistry.chemical_compoundCrystallographychemistryMaterials ChemistryPhysical and Theoretical ChemistryStoichiometryPolyhedron
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Light Induced C-C Coupling of 2-Chlorobenzazoles with Carbamates, Alcohols, and Ethers.

2016

A light induced, transition-metal-free C-C coupling reaction of 2-chlorobenzazoles with aliphatic carbamates, alcohols, and ethers is presented. Inexpensive reagents, namely sodium acetate, benzophenone, water, and acetonitrile, are employed in a simple reaction protocol using a cheap and widely available 25 W energy saving UV-A lamp at ambient temperature.

010405 organic chemistryOrganic Chemistry010402 general chemistry01 natural sciencesCoupling reaction0104 chemical scienceschemistry.chemical_compoundC c couplingchemistryReagentLight inducedBenzophenoneOrganic chemistryAcetonitrileSodium acetateThe Journal of organic chemistry
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Magnetostructural correlations in CuII−NC−WV linkage: the case of [CuII(diimine)]2+−[WV(CN)8]3− 0D assemblies

2009

International audience; We report on the syntheses, crystal structures, and magnetic properties of two cyano-bridged molecular assemblies: [CuII(phen)3]2{[CuII(phen)2]2[WV(CN)8]2}(ClO4)2·10H2O (phen = 1,10-phenanthroline) (1) and {[CuII(bpy)2]2[WV(CN)8]} {[CuII(bpy)2][WV(CN)8]}·4H2O (bpy = 2,2′-bipyridyl) (2). Compound 1 consists of cyano-bridged [CuII2WV2]2− molecular rectangles and isolated [CuII(phen)3]2+ complexes. The molecular structure of 2 reveals cyano-bridged trinuclear [CuII2WV]+ and dinuclear [CuIIWV]− ions. Magnetic interactions in 1 are interpreted in terms of the model of a tetranuclear moiety consisting of two ferromagnetic CuII−NC−WV units (J1 = +39(4) cm−1) interacting ant…

010405 organic chemistryStereochemistryChemistryCrystal structureCrystal structureMagnetic response[CHIM.MATE]Chemical Sciences/Material chemistry010402 general chemistry01 natural sciencesAntiferromagnetic coupling0104 chemical sciencesIonInorganic ChemistryCrystallographyFerromagnetismTheoryofComputation_ANALYSISOFALGORITHMSANDPROBLEMCOMPLEXITYMagnetic propertiesMoleculeMoietyChemical synthesisPhysical and Theoretical ChemistryCyano bridged molecular assembliesDiimine
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Synthesis, crystal structure and magnetic properties of a cyanide-bridged heterometallic {CoIIMnIII} chain

2017

The assembly reaction between the low-spin [CoII(dmphen)(CN)3]- metalloligand and the [MnIII(salen)(H2O)]+ complex cation yielded the one-dimensional compound {[MnIII(salen)(μ-NC)2CoII(dmphen)(CN)]·2H2O}n (1), which behaves as a ferrimagnetic chain, the intrachain magnetic coupling being J = -1.71(1) cm-1.

010405 organic chemistryStereochemistryCyanideCrystal structure010402 general chemistry01 natural sciencesInductive coupling0104 chemical sciencesInorganic Chemistrychemistry.chemical_compoundCrystallographychemistryChain (algebraic topology)FerrimagnetismDalton Transactions
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Molybdenum Pentachloride Mediated Synthesis of Spirocyclic Compounds by Intramolecular Oxidative Coupling

2015

The oxidative treatment of (m)ethyl 2-aryl cinnamates equipped with methoxy groups in position 4 of the phenyl moiety promote the formation of cyclohexadienone substructures. This dealkylative oxidative C–C coupling gives access to spirocyclic compounds and avoids the construction of the corresponding phenanthrenes. Furthermore, the transformation can be expanded to other spirocyclic systems.

010405 organic chemistryStereochemistryOrganic Chemistrychemistry.chemical_elementMolybdenum pentachloride010402 general chemistry01 natural sciences0104 chemical sciencesScholl reactionchemistryMolybdenumIntramolecular forceMoietyCinnamatesOxidative coupling of methanePhysical and Theoretical ChemistryPhenanthrenesEuropean Journal of Organic Chemistry
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Reactions in the presence of irradiated semiconductors: Are they simply photocatalytic?

2018

A generally accepted classification distinguishes semiconductor photocatalysis in type A and type B. The first class comprehends reactions where the primary redox products (radical anions and cations) further evolve giving rise to the final reduced and oxidized species. Type B reactions occur when the primary redox products undergo intermolecular bond formation to addition products. Recently, some photocatalytic reactions have been reported wherein the photocatalytically produced compounds are not the final products. In fact, they react in the solution bulk or catalytically on the surface of the semiconductor with other species thus producing the target compounds. These reactions, hereby re…

010405 organic chemistrybusiness.industryChemistryC-H activation of alkaneOrganic ChemistryPrimary redox product010402 general chemistryPhotochemistry01 natural sciencesIrradiated semiconductor0104 chemical sciencesSemiconductorPhotocatalysisC-O bond formationIrradiationSettore CHIM/07 - Fondamenti Chimici Delle TecnologiebusinessC-N couplingSemiconductor photocatalysi
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