Search results for "Asymmetric Synthesis"

showing 10 items of 40 documents

Stereoselective synthesis of perillaldehyde-based chiral β-amino acid derivatives through conjugate addition of lithium amides.

2014

The Michael addition of dibenzylamine to (+)-tert-butyl perillate (3) and to (+)-tert-butyl phellandrate (6), derived from (S)-(−)-perillaldehyde (1), resulted in diastereomeric β-amino esters 7A–D in a moderately stereospecific reaction in a ratio of 76:17:6:1. After separation of the diastereoisomers, the major product, cis isomer 7A, was quantitatively isomerized to the minor component, trans-amino ester 7D. All four isomers were transformed to the corresponding β-amino acids 10A–D, which are promising building blocks for the synthesis of β-peptides and 1,3-heterocycles in three steps. The steric effects of the isopropyl group at position 4 and of the α-methyl substituent of (R)-N-benzyl…

chemistry.chemical_classificationStereochemistryOrganic Chemistryasymmetric synthesisDiastereomerSubstituentEnantioselective synthesisFull Research PaperAmino acidlcsh:QD241-441chiralchemistry.chemical_compoundChemistryStereospecificitylcsh:Organic chemistrychemistryMichael additionβ-amino acidMichael reactionlcsh:QStereoselectivitylcsh:Scienceta116IsopropylmonoterpeneBeilstein journal of organic chemistry
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Recent Advances in Enantioselective Desymmetrizations of Prochiral Oxetanes

2021

Abstract Strain relief of oxetanes offers a plethora of opportunities for the synthesis of chiral alcohols and ethers. In this context, enantioselective desymmetrization has been identified as a powerful tool to construct molecular complexity and this has led to the development of elegant strategies on the basis of transition metal, Lewis acid, and Brønsted acid catalysis. This review highlights recent examples that harness the inherent reactivity of prochiral oxetanes and offers an outlook on the immense possibilities for synthetic application.

Molecular complexity010405 organic chemistryChemistryOrganic Chemistryoxetaneoxygen heterocyclesEnantioselective synthesisMinireviewsContext (language use)General ChemistryStrain relief010402 general chemistry01 natural sciencesCombinatorial chemistryDesymmetrizationCatalysis0104 chemical sciencesdesymmetrizationstrained moleculesMinireviewLewis acids and basesAsymmetric SynthesisChemistry – A European Journal
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Recent progress in the application of fluorinated chiral sulfinimine reagents

2018

Abstract The development of synthetic methodology allowing for a strategic incorporation of fluorine into target compounds is in a high demand in many areas of the chemical and pharmaceutical industries. In this regard, application of fluorinated chiral sulfinimine reagents, in particularly, N-tert-butylsulfinyl-3,3,3-trifluoroacetaldimine, is one of the most general and practical approaches for preparation of compounds containing pharmacophoric fluoro-amino-keto/hydroxy moieties. This article provides a timely and comprehensive overview of the recent synthetic applications of fluorinated chiral sulfinimine reagents for asymmetric synthesis of fluoro-containing polyfunctional amino-compound…

010405 organic chemistryChemistryOrganic ChemistryEnantioselective synthesisAsymmetric synthesisFluoro-imineAmino compounds010402 general chemistry01 natural sciencesBiochemistryCombinatorial chemistry0104 chemical sciencesInorganic ChemistrySulfinimineReagentEnvironmental ChemistryPhysical and Theoretical ChemistryAmino compounds; Asymmetric synthesis; Fluoro-imine; Sulfinimine; Biochemistry; Environmental Chemistry; Physical and Theoretical Chemistry; Organic Chemistry; Inorganic ChemistryJournal of Fluorine Chemistry
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Supported Organocatalysts: a Powerful Tool in Organic Synthesis

2012

Organocatalysis asymmetric synthesisSettore CHIM/06 - Chimica Organica
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Stereoselective synthesis of the naturally occurring 2-pyranone dodoneine

2008

The first total synthesis of the naturally occurring dihydropyranone dodoneine is reported. Asymmetric allylation reactions were used for the stereoselective generation of the two stereogenic centers. The pyranone ring was created by ring-closing metathesis. (© Wiley-VCH Verlag GmbH & Co. KGaA, 69451 Weinheim, Germany, 2008)

AllylationStereochemistryChemistryOrganic ChemistryEnantioselective synthesisTotal synthesisAsymmetric synthesisRing (chemistry)Metathesis56-Dihydropyran-2-onesStereocenterDodoneineRing-closing metathesisOxygen heterocyclesStereoselectivityRing-closing metathesisPhysical and Theoretical Chemistry
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Asymmetric Synthesis of Spiro β-Lactamsviaa Squaramide- Catalyzed Sulfa-Michael Addition/Desymmetrization Protocol

2016

An efficient asymmetric synthesis of spirocyclohexenone β-lactams bearing three contiguous stereocenters has been achieved in moderate to good yields and high stereoselectivities. The protocol involves the combination of a squaramide-catalyzed sulfa-Michael addition under desymmetrization via a dynamic kinetic resolution of racemic 2,5-cyclohexadienones.

010405 organic chemistryChemistryStereochemistrybeta-lactamsasymmetric synthesisEnantioselective synthesisSquaramideGeneral Chemistry010402 general chemistry01 natural sciencesDesymmetrization0104 chemical sciencesKinetic resolutionStereocenterCatalysisOrganocatalysisMichael reactionta116Advanced Synthesis & Catalysis
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ASYMMETRIC SYNTHESIS OF LINEZOLID THROUGH CATALYZED HENRY REACTION

2013

Linezolid 1 is an antibacterial oxazolidinone approved by FDA in 2000 for the treatment of fastidious bacterial infections.1 The asymmetric synthesis of Linezolid-like molecules make use of the chiral pool approach, through the so-called Manninen reaction.2 This strategy requires the use of BuLi, low temperature and a long elaboration of the acetamide chain. Curiously, the only catalyzed approach toward the asymmetrical synthesis of Linezolid was just recently reported, and belongs to the use of proline-derived catalysts in aldol reactions as the key step.3 This procedure is quite interesting except for the low yield. Here we report a new synthesis of Linezolid, based on a Cu(II)-catalyzed …

Settore CHIM/06 - Chimica OrganicaLineolid Henry reaction Asymmetric synthesis antibacterials
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Scalable (Enantioselective) Syntheses of Novel 3-Methylated Analogs of Pazinaclone, (S)-PD172938 and Related Biologically Relevant Isoindolinones

2022

Herein, we report the application of an efficient and practical K2CO3 promoted cascade reaction of 2-acetylbenzonitrile in the synthesis of novel 3-methylated analogs of Pazinaclone and PD172938, belonging to isoindolinones heterocyclic class bearing a tetrasubstituted stereocenter. Organocatalytic asymmetric synthesis of the key intermediate and its transformation into highly enantioenriched 3-methylated analog of (S)-PD172938 was also developed. These achievements can be of particular interest also for medicinal chemistry, since the methyl group is a very useful structural modification in the rational design of new and more effective bioactive compounds.

heterocyclesisoindolinonesChemistry (miscellaneous)asymmetric synthesisOrganic ChemistryDrug Discoveryheterocycles; asymmetric synthesis; isoindolinonesMolecular MedicinePharmaceutical SciencePhysical and Theoretical ChemistryAnalytical ChemistryMolecules
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A P-chirogenic β-aminophosphine synthesis by diastereoselective reaction of the α-metallated PAMP–borane complex with benzaldimine

2004

International audience; The diastereoselective synthesis of a P-chirogenic β-aminophosphine ligand with carbon–carbon bond formation of the ethano bridge in a 3:1 ratio via reaction of an α-metallated P-chirogenic phosphine borane with a benzaldimine is described. The diastereoselectivity is attributed to a transition state where the lithium cation chelates the phosphine borane carbanion and the nitrogen of the imine and the attack of the C@N occurs on the face opposite to the P–B bond, due to its interaction with the antibonding P–B bond. The major diastereoisomeric β-aminophosphine borane was then separated and decomplexed into the corresponding β-aminophosphine under neutral conditions a…

010405 organic chemistryLigandOrganic ChemistryImineEnantioselective synthesisAsymmetric synthesisBoranesAminophosphineBoraneChiral phosphorous010402 general chemistryAntibonding molecular orbital01 natural sciencesMedicinal chemistryCatalysis0104 chemical sciencesInorganic Chemistrychemistry.chemical_compoundchemistryBoraneOrganic chemistry[CHIM.COOR]Chemical Sciences/Coordination chemistryPhysical and Theoretical ChemistryPhosphineCarbanionTetrahedron: Asymmetry
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Supported Organocatalysts as a Powerful Tool in Asymmetric Synthesis

2010

Organocatalysis Asymmetric Synthesis Recyclable materialsSettore CHIM/06 - Chimica Organica
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