Search results for "aldol reaction"

showing 10 items of 106 documents

ChemInform Abstract: Hydrophobically Directed Aldol Reactions: Polystyrene-Supported L-Proline as a Recyclable Catalyst for Direct Asymmetric Aldol R…

2008

A simple synthetic methodology for the preparation of a polystyrene-supported L-proline material is reported, and this material has been used as catalyst in direct asymmetric aldol reactions between several ketones and arylaldehydes to furnish aldol products in high yields and stereoselectivities. Screening of solvents showed that these reactions take place only in the presence of water or methanol, at lower levels of conversion in the latter case. This solvent effect, coupled with the observed high stereoselectivities, has been explained in terms of the formation of a hydrophobic core in the inner surface of the resin, whereas the hydrophilic proline moiety lies at the resin/water interfac…

chemistry.chemical_compoundAldol reactionChemistryMoietyOrganic chemistryStereoselectivityGeneral MedicineProlinePolystyreneMethanolSolvent effectsCatalysisChemInform
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Carbohydrates as Stereodifferentiating Auxiliaries

2017

Carbohydrates are inexpensive natural products. Although they contain numerous functional groups and stereogenic centers in one molecule, carbohydrates were recognized as stereodifferentiating auxiliaries much later than other classes of natural products as for example amino acids or terpenes. Apart from their polyfunctional nature carbohydrates are characterized by the anomeric and exo-anomeric effects which have distinct influence of the spatial orientation of substituents linked to the anomeric position. Based on these stereochemical properties carbohydrates were used as stereodifferentiating auxiliaries in numerous diastereoselective reactions, such as aldol addition, alkylation reactio…

chemistry.chemical_classificationTerpeneAnomerchemistryAldol reactionOrganic chemistryMoleculeAlkylationCycloadditionAmino acidStereocenter
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A Convenient Generation of Acetic Acid Dianion

2003

The lithium enediolate of acetic acid can be generated efficiently, as a 0.5 M solution in THF, using lithium amides prepared from n-butyllithium in THF and either diethylamine or 1,3,3-trimethyl-6-azabicyclo-(3.2.1)-octane (AZA). Its reaction with carbonyl compounds leads to the corresponding β-hydroxy acids in good to moderate yields. Better yields are usually obtained when these amines are added in sub-stoichiometric amounts. (© Wiley-VCH Verlag GmbH & Co. KGaA, 69451 Weinheim, Germany, 2003)

DiethylamineNucleophilic additionOrganic Chemistrychemistry.chemical_elementGeneral MedicineMedicinal chemistryAcetic acidchemistry.chemical_compoundchemistryAldol reactionOrganic chemistryLithiumPhysical and Theoretical ChemistryCarbanionEuropean Journal of Organic Chemistry
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Diastereoselective Synthesis of Spiro[pyrazolone-4,3′-tetrahydrothiophenes] via a Sulfa-Michael/Aldol Domino Reaction

2016

Synthesis : journal of synthetic organic chemistry 48(23), 4091-4098(2016). doi:10.1055/s-0035-1562473

Reaction conditions010405 organic chemistryChemistryOrganic ChemistryPyrazolone010402 general chemistry54001 natural sciencesCombinatorial chemistryCatalysisDomino0104 chemical scienceschemistry.chemical_compoundCascade reactionAldol reactionYield (chemistry)ddc:540medicineOrganic chemistryTetrahydrothiophenemedicine.drug
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Exploring the potential of some yeast strains in the stereoselective synthesis of aldol reaction products and its reduced 1,3-dialcohol derivatives

2013

Abstract The behavior of two yeast strains has been studied under different conditions. Both microorganims catalyzed the aldol reaction between activated aldehydes and acetone when a large amount of the latter was present in the reaction medium producing, with moderate stereoselectivity, the aldol product with the R configuration. No reduction of any of the products present in the medium was detected. On the other hand, the carbonyl group of the racemic aldol was reduced to produce chiral 1,3-dialcohol derivatives when water was employed as the only solvent. In this case, the resolution of the racemic starting material was also possible with one of the biocatalysts, and the aldol was recove…

ChemistryProcess Chemistry and TechnologyCarbonyl reductionEnantioselective synthesisBioengineeringBiochemistryCatalysisLewis acid catalysisStereocenterAldol reactionBiocatalysisOrganic chemistryAldol condensationStereoselectivityJournal of Molecular Catalysis B: Enzymatic
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Supported ionic liquid asymmetric cathalysis. A new method for chiral catalyst recycling

2004

A new method for chiral catalysts recycling, based on the supported ionic liquid asymmetric catalysis concept, has been developed. This concept involves the treatment of a monolayer of covalently attached ionic liquid on the surface of silica gel with additional ionic liquid. These layers serve as the reaction phase in which the homogeneous chiral catalyst is dissolved. As first application of this concept the L-proline-catalyzed aldol reaction has been carried out. Good yields and ee values, comparable with those obtained under homogeneous conditions have been obtained. Moreover, this material shows high regenerability.

aldol reactionSettore CHIM/06 - Chimica Organicaorganocatalysiionic liquid
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Using theozymes for designing transition-state analogs for the intramolecular aldol reaction of δ-diketones

2001

Two theozymes for the intramolecular aldol reaction of δ-diketones have been studied using ab initio methods. The presence of both acid/base residues favors several steps of the aldol reaction. The appropriate positioning of these residues can accelerate one of two diastereromeric reaction pathways, the catalyzed aldol reaction being highly stereoselective. Analysis of the geometrical parameters, charge distribution, and the shape of molecular electrostatic potential for the corresponding acid/base catalyzed transition structure allows us to design adequate transition-state analogs to favor a reactive channel of this intramolecular aldol reaction. © 2001 John Wiley & Sons, Inc. Int J Quant …

ChemistryStereochemistryorganic chemicalsAb initioCondensed Matter PhysicsAtomic and Molecular Physics and OpticsCatalysisLewis acid catalysisAldol reactionTransition state analogAb initio quantum chemistry methodsIntramolecular forcepolycyclic compoundsStereoselectivityPhysical and Theoretical ChemistryInternational Journal of Quantum Chemistry
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Enantioselective copper-aminopyridine-catalyzed aza-Henry reaction with chelating N-(2-pyridyl)sulfonyl imines

2012

This article describes a copper-catalyzed aza-Henry reaction. Copper complexes of camphor-derived aminopyridines catalyze the addition of nitromethane to N-(2-pyridyl)sulfonyl aldimines to give the corresponding β-nitrosulfonamides with good yields and variable enantiomeric excesses (up to 83%). An example of transformation of these compounds into N-(2-pyridyl)sulfonyl-α-amino acids and deprotection of the sulfonamide with Mg–MeOH is provided. Chirality 24:441–450, 2012. © 2012 Wiley Periodicals, Inc.

Pharmacologychemistry.chemical_classificationSulfonylAldimineNitroaldol reactionNucleophilic additionOrganic ChemistryEnantioselective synthesisMedicinal chemistryCatalysisAnalytical ChemistrySulfonamidechemistryDrug DiscoveryOrganic chemistryChirality (chemistry)SpectroscopyAminopyridinesChirality
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ChemInform Abstract: New Ionic Liquid-Modified Silica Gels as Recyclable Materials for L-Proline- or H-Pro-Pro-Asp-NH2-Catalyzed Aldol Reaction.

2008

L-proline and the tripeptide H–Pro–Pro–Asp–NH2 (1) have been supported, by adsorption, onto the surface of modified silica gels functionalized with a monolayer of covalently attached 1,2-dimethyl-imidazolium chloride, tetrafluoroborate or hexafluorophosphate ionic moieties, respectively. Three different linkers were used to attach the ionic liquid moiety to the surface of these supports. The resulting materials have been used as catalysts for the aldol reaction between acetone and several substituted benzaldehydes. Good yields and enantioselectivities, comparable to or better than those obtained under homogeneous conditions, were obtained. These materials are easily recovered by filtration,…

chemistry.chemical_compoundAddition reactionAdsorptionchemistryAldol reactionHexafluorophosphateIonic liquidPolymer chemistryMoietyIonic bondingGeneral MedicineTripeptideChemInform
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Stereoselective aldol reaction catalyzed by a highly recyclable polystyrene supported substituted prolinamide catalyst

2008

Polystyrene supported substituted prolinamide was used as catalyst in the aldol reaction between cyclohexanone or acetone and several substituted benzaldehydes in chloroform/water. This catalyst afforded aldol products in high yields and stereoselectivities, especially in the case of reactions performed with acetone. The catalyst was easily recovered by filtration and reused, after regeneration with formic acid, up to 22 times.

organocatalysis proline aldol reaction polystyrenechemistry.chemical_compoundChloroformchemistryAldol reactionFormic acidOrganocatalysisOrganic ChemistryAcetoneCyclohexanoneOrganic chemistryPolystyreneCatalysis
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