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Conjugate addition reactions enantioselective

Quite a number of asymmetric thiol conjugate addition reactions are known [84], but previous examples of enantioselective thiol conjugate additions were based on the activation of thiol nucleophiles by use of chiral base catalysts such as amino alcohols [85], the lithium thiolate complex of amino bisether [86], and a lanthanide tris(binaphthoxide) [87]. No examples have been reported for the enantioselective thiol conjugate additions through the activation of acceptors by the aid of chiral Lewis acid catalysts. We therefore focussed on the potential of J ,J -DBFOX/ Ph aqua complex catalysts as highly tolerant chiral Lewis acid catalyst in thiol conjugate addition reactions. [Pg.285]

Copper-catalyzed Enantioselective Conjugate Addition Reactions of Organozinc Reagents... [Pg.224]

Conjugate addition reactions involving organocopper intermediates can be made enantioselective by using chiral ligands.86 Several mixed cuprate reagents containing... [Pg.702]

Garreira and co-workers demonstrated the asymmetric conjugate addition reaction of Meldrum s acid-derived acceptors (Scheme 23).72 The adducts were obtained in good enantioselectivities (up to 94% ee). [Pg.380]

Feringa, B. L. Naasz, R. Imbos, R. Arnold, L. A. Copper-catalyzed Enantioselective Conjugate Addition Reactions of Organozinc Reagents. In Modem Organocopper Chemistry Krause, N. Ed. Wiley-VCH GmbH Weinheim, 2002 Chapter 7, pp 224—258. [Pg.399]

Shibasaki s lanthanide-alkaline metal-BINOL system, discussed in Chapters 2 and 3, can also effect the asymmetric conjugate addition reaction. As shown in Scheme 8-35, enantioselective conjugate addition of thiols to a,/ -unsaturated carbonyl compounds proceeds smoothly, leading to the corresponding products with high yield and high ee.76... [Pg.478]

This chapter will begin with a discussion of the role of chiral copper(I) and (II) complexes in group-transfer processes with an emphasis on alkene cyclo-propanation and aziridination. This discussion will be followed by a survey of enantioselective variants of the Kharasch-Sosnovsky reaction, an allylic oxidation process. Section II will review the extensive efforts that have been directed toward the development of enantioselective, Cu(I) catalyzed conjugate addition reactions and related processes. The discussion will finish with a survey of the recent advances that have been achieved by the use of cationic, chiral Cu(II) complexes as chiral Lewis acids for the catalysis of cycloaddition, aldol, Michael, and ene reactions. [Pg.4]

I 7 Copper-catalyzed Enantioselective Conjugate Addition Reactions of Organozinc Reagents Tab. 7.4. Conjugate additions to 2,5-cyclohexadienone monoacetals and ethers. [Pg.248]


See other pages where Conjugate addition reactions enantioselective is mentioned: [Pg.285]    [Pg.286]    [Pg.224]    [Pg.75]    [Pg.90]    [Pg.96]    [Pg.494]    [Pg.71]    [Pg.156]    [Pg.127]    [Pg.133]    [Pg.145]    [Pg.164]    [Pg.224]    [Pg.127]    [Pg.133]    [Pg.145]    [Pg.164]    [Pg.224]   
See also in sourсe #XX -- [ Pg.568 , Pg.576 , Pg.798 ]




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Addition, conjugate enantioselectivity

Conjugate addition enantioselective

Conjugate addition reactions

Conjugate reaction

Conjugated addition reaction

Conjugated enantioselectivity

Conjugated reaction

Conjugative reactions

Copper-catalyzed Enantioselective Conjugate Addition Reactions of Organozinc Reagents

Enantioselective Cascade Reactions Initiated by Conjugate Addition

Enantioselective Conjugate Addition Reactions Proceeding via Other Types of Activation

Enantioselective Conjugate Addition Reactions via Enamine Activation

Enantioselective Conjugate Addition Reactions via Hydrogen-bonding Activation

Enantioselective Conjugate Addition Reactions via Phase-transfer Catalysis

Enantioselective Nickel(n)-Catalysed Conjugate Addition Reactions

Enantioselective additions

Enantioselective nickel-catalysed conjugate addition reactions

Enantioselective reaction

Enantioselective reactions (continued conjugate addition

Enantioselective reactions conjugate addition, free radical

Enantioselectivity addition reactions

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