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showing 10 items of 25093 documents

Ionic Liquid Gels: Supramolecular Reaction Media for the Alcoholysis of Anhydrides.

2019

The search of new enantioselective catalysts, able to promote synthetically useful organic reactions with high levels of asymmetric induction, should be associated with the attention to the suitable reaction medium able to achieve the best efficiency in chemical processes. We have investigated the enantioselective desymmetrization of cyclic meso-anhydrides in nonconventional reaction media such as ionic liquids and supramolecular gels. With this aim, we examined several variables in the reacting system: the nature of ionic liquid used as the reaction medium, the gelation solvent, the structure of the anhydrides, the structure of alcohols, the chiral catalysts, and the reaction conditions, i…

010405 organic chemistryOrganic ChemistrySupramolecular chemistryEnantioselective synthesisOrganic Chemistry supramolecular gels catalysis010402 general chemistry01 natural sciencesAsymmetric induction0104 chemical sciencesCatalysischemistry.chemical_compoundionogelsupramolecular gelchemistryOrganic reactionionic liquid ionogel supramolecular gel quinidine organocatalyst asymmetric alcoholysis of cyclic anhydrideIonic liquidOrganic chemistryquinidine organocatalystionic liquidasymmetric alcoholysis of cyclic anhydrideThe Journal of organic chemistry
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2020

Teraryl-based alpha-helix mimetics have resulted in efficient inhibitors of protein-protein interactions (PPIs). Extending the concept to even longer oligoarene systems would allow for the mimicking of even larger interaction sites. We present a highly efficient synthetic modular access to quateraryl alpha-helix mimetics, in which, at first, two phenols undergo electrooxidative dehydrogenative cross-coupling. The resulting 4,4′-biphenol is then activated by conversion to nonaflates, which serve as leaving groups for iterative Pd-catalyzed Suzuki-cross-coupling reactions with suitably substituted pyridine boronic acids. This work, for the first time, demonstrates the synthetic efficiency of …

010405 organic chemistryPeptidomimetic010402 general chemistryElectrosynthesis01 natural sciencesCombinatorial chemistryCatalysis0104 chemical sciencesProtein–protein interactionCatalysischemistry.chemical_compoundchemistryPyridinePhenolsPhysical and Theoretical ChemistryTrifluoromethanesulfonateAlpha helixCatalysts
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On the Rationalization of Formation of Solvates: Experimental and Computational Study of Solid Forms of Several Nitrobenzoic Acid Derivatives

2020

Analysis of crystal structures, molecular properties, interaction strength in solution and computationally generated non-solvated form solid form landscapes of five chloronitrobenzoic acid isomers ...

010405 organic chemistryRationalization (psychology)Interaction strengthGeneral ChemistryCrystal structure010402 general chemistryCondensed Matter Physics01 natural sciences0104 chemical scienceschemistry.chemical_compoundchemistryComputational chemistryNitrobenzoic acidGeneral Materials ScienceCrystal Growth & Design
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Kinetic and Electrochemical Studies of the Oxidative Addition of Demanding Organic Halides to Pd(0): the Efficiency of Polyphosphane Ligands in Low P…

2013

International audience; Oxidative addition (OA) of organic halides to palladium(0) species is a fundamental reaction step which initiates the C–C bond formation catalytic processes typical of Pd(0)/Pd(II) chemistry. The use of structurally congested polyphosphane ligands in palladium-catalyzed C–C bond formation has generated very high turnover numbers (TONs) in topical reactions such as Heck, Suzuki, Sonogashira couplings, and direct sp2C–H functionalization. Herein, the OA of aryl bromides to Pd(0) complexes stabilized by ferrocenylpolyphosphane ligands L1 (tetraphosphane), L2 (triphosphane), and L3 (diphosphane) is considered. The investigation of kinetic constants for the addition of Ph…

010405 organic chemistryReaction stepInorganic chemistrychemistry.chemical_elementHalide[CHIM.CATA]Chemical Sciences/CatalysisBond formation010402 general chemistryPhotochemistryKinetic energyElectrochemistry01 natural sciencesOxidative addition0104 chemical sciencesCatalysisInorganic Chemistry[ CHIM.CATA ] Chemical Sciences/CatalysischemistryPhysical and Theoretical ChemistryPalladium
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Cathodic Corrosion of Metal Electrodes—How to Prevent It in Electroorganic Synthesis

2021

The critical aspects of the corrosion of metal electrodes in cathodic reductions are covered. We discuss the involved mechanisms including alloying with alkali metals, cathodic etching in aqueous and aprotic media, and formation of metal hydrides and organometallics. Successful approaches that have been implemented to suppress cathodic corrosion are reviewed. We present several examples from electroorganic synthesis where the clever use of alloys instead of soft neat heavy metals and the application of protective cationic additives have allowed to successfully exploit these materials as cathodes. Because of the high overpotential for the hydrogen evolution reaction, such cathodes can contri…

010405 organic chemistrySide reactionchemistry.chemical_elementReviewGeneral ChemistryOverpotential010402 general chemistryElectrochemistryElectrosynthesis01 natural sciences0104 chemical sciencesCorrosionCathodic protectionMetalchemistryChemical engineeringvisual_artvisual_art.visual_art_mediumPlatinumChemical Reviews
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Unexpected Scholl Reaction of 6,7,13,14-Tetraarylbenzo[k]tetraphene: Selective Formation of Five-Membered Rings in Polycyclic Aromatic Hydrocarbons

2016

Cyclodehydrogenation is a versatile reaction that has enabled the syntheses of numerous polycyclic aromatic hydrocarbons (PAHs). We now describe a unique Scholl reaction of 6,7,13,14-tetraarylbenzo[k]tetraphene, which "unexpectedly" forms five-membered rings accompanying highly selective 1,2-shift of aryl groups. The geometric and optoelectronic nature of the resulting bistetracene analogue with five-membered rings is comprehensively investigated by single-crystal X-ray, NMR, UV-vis absorption, and cyclic voltammetry analyses. Furthermore, a possible mechanism is proposed to account for the selective five-membered-ring formation with the rearrangement of the aryl groups, which can be ration…

010405 organic chemistryStereochemistryArylGeneral Chemistry010402 general chemistryHighly selective01 natural sciencesBiochemistryCatalysis0104 chemical sciencesScholl reactionchemistry.chemical_compoundColloid and Surface ChemistrychemistryComputational chemistryDensity functional theoryAbsorption (chemistry)Cyclic voltammetryTetrapheneJournal of the American Chemical Society
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Asymmetric Vinylogous Mannich-Type Addition of α,α-Dicyanoalkenes to α-Fluoroalkyl Sulfinyl Imines

2018

Abstract. The asymmetric vinylogous Mannich reaction (AVMR) of alfa,alfa-dicyanoalkenes with alfa-fluoroalkyl sulfinyl imines has been successfully accomplished. This transformation is unprecedented with fluorinated imines at the same time as the use of dicyanoalkenes in AVMR has been scarcely reported. Several fluorinated sulfinyl imines are compatible with the process, which gaves access to a family of chiral fluorinated amines with excellent level of stereocontrol. Interestingly, the selectivity found in our protocol is reverse to that encountered in analogous AVMR previously reported. Additionally, the synthetic applicability of the addition products has been exemplified with several tr…

010405 organic chemistryStereochemistryChemistryMoietyReactivity (chemistry)General Chemistry010402 general chemistrySelectivity01 natural sciencesMedicinal chemistryMannich reaction0104 chemical sciencesAdvanced Synthesis & Catalysis
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Thiourea-Catalyzed Domino Michael–Mannich [3+2] Cycloadditions: A Strategy for the Asymmetric Synthesis of 3,3′-Pyrrolidinyl-dispirooxindoles

2017

The asymmetric synthesis of trifluoromethylated 3,3′-pyrrolidinyl-dispirooxindole derivatives with four contiguous stereogenic centers, including two vicinal spiro-stereocenters, is described. Employing a bifunctional thiourea catalyst, a domino Michael–Mannich [3+2] cycloaddition occurs readily between isatin ketimines and isatin-derived enoates with good yields and very high stereoselectivities, providing a direct entry to the title compounds of potential medical value.

010405 organic chemistryStereochemistryIsatinOrganic ChemistryEnantioselective synthesis010402 general chemistry01 natural sciencesCombinatorial chemistryCycloadditionDomino0104 chemical sciencesStereocenterchemistry.chemical_compoundchemistryCascade reactionThioureaOrganocatalysisSynlett
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Catalytic enantioselective aza-Reformatsky reaction with seven-membered cyclic imines dibenzo[b,f][1,4]oxazepines

2017

A catalytic enantioselective aza-Reformatsky reaction is reported with cyclic dibenzo[b,f][1,4]oxazepines and ethyl iodoacetate leading to the synthesis of chiral ethyl 2-(10,11-dihydrodibenzo[b,f][1,4]oxazepin-11-yl)acetate derivatives with excellent yields and high enantioselectivities (up to 98% yield and 97 : 3 er) using a readily available diaryl prolinol L4 as the chiral ligand and Me2Zn as the zinc source under an air atmosphere. Furthermore, different transformations were carried out with the corresponding chiral β-amino esters, preserving in all cases the optical purity.

010405 organic chemistryStereochemistryOrganic ChemistryEthyl iodoacetateChiral ligandEnantioselective synthesis010402 general chemistry01 natural sciences0104 chemical sciencesCatalysisProlinolReaccions químiqueschemistry.chemical_compoundchemistryYield (chemistry)Reformatsky reactionEnantiomeric excessQuímica orgànica
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Cross-Metathesis/Intramolecular (Hetero-)Michael Addition: A Convenient Sequence for the Generation of Carbo- and Heterocycles

2017

The high stability and functional group compatibility of ruthenium carbene complexes confer them a great ability to catalyze domino processes. For this reason, the combination of metathesis reactions with additional transformations in a domino fashion has been exploited extensively, with the result of expanding the utility of ruthenium carbene complexes beyond that of just olefin metathesis. Among those domino processes, it is worth mentioning the sequence of cross-metathesis/intramolecular Michael addition, which allows for the generation of a wide variety of carbo- and heterocycles in a very simple manner, taking advantage of the benefits of domino reactions. Carbon-, oxygen- and nitrogen…

010405 organic chemistryStereochemistryOrganic Chemistrychemistry.chemical_element010402 general chemistryMetathesis01 natural sciencesCatalysisDomino0104 chemical sciencesRutheniumchemistry.chemical_compoundchemistryNucleophileIntramolecular forceSalt metathesis reactionMichael reactionCarbeneSynthesis
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