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Mukaiyama aldol reaction Trityl perchlorate

Triphenylphosphine-Diethyl azodicar-boxylate-Lithium halides, 332 Mukaiyama aldol reaction 1-Methoxy-l, 3-bis(trimethylsilyloxy)-l, 3-butadiene, 178 Tin(II) chloride, 298 Titanium(IV) chloride, 304 Trityl perchlorate, 339 Murahashi reaction N,N-Methylphenylaminotributylphos-phonium iodide, 191... [Pg.368]

During the past decades, the scope of Lewis acid catalysts was expanded with several organic salts. The adjustment of optimal counter anion is of significant importance, while it predetermines the nature and intensity of catalytic Lewis acid activation of the reactive species. Discovered over 100 years ago and diversely spectroscopically and computationally investigated [131-133], carbocations stiU remain seldom represented in organocatalysis, contrary to analogous of silyl salts for example. The first reported application of a carbenium salt introduced the trityl perchlorate 51 (Scheme 49) as a catalyst in the Mukaiyama aldol-type reactions and Michael transformations (Scheme 50) [134-142]. [Pg.372]

Recently Mukaiyama and coworkers introduced the use of trityl salts as efficient catalysts for the aldol reaction. Using a catalytic amount of trityl perchlorate (5 mol %) and t-butyldimethylsilyl enol ethers, the anti aldols were preferentially obtained (anti 73-84%) regardless of the double bond geometry. With trityl triflate (5 mol %) and dimethylphenylsilyl enol ethers, the syn isomers are produced predominantly (syn 63-79% Scheme 1). Several variations of the catalyst system have been developed. Trityl... [Pg.632]

Carbocations were discovered over 100 years ago and have been investigated in diverse ways both spectroscopically and computationally [86-88]. Although as cations they can possess strong Lewis acidic character, carbocations remain seldom represented in organocatalysis, unlike the analogous of silyl salts, for example, discussed above. The first catalytic application of a carbenium salt, the trityl perchlorate 35 (Figure 16.7), was reported for Mukaiyama aldol-type reactions and Michael transformations (Scheme 16.29) [89-97]. [Pg.448]


See other pages where Mukaiyama aldol reaction Trityl perchlorate is mentioned: [Pg.152]    [Pg.635]    [Pg.635]    [Pg.635]   
See also in sourсe #XX -- [ Pg.339 ]




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Mukaiyama

Mukaiyama aldol reaction

Perchlorate reaction

Trityl

Trityl perchlorate

Trityl perchlorate aldol reaction

Tritylation

Trityls

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