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Asymmetric reductions, cinchona-based organocatalysts

Cinchona-Based Organocatalysts for Asymmetric Oxidations and Reductions... [Pg.107]

In 2003, Rawal reported the use of TADDOLs 177 as chiral H-bonding catalysts to facilitate highly enantioselec-tive hetero-Diels-Alder reactions between dienes 181 and different aldehydes 86 (Scheme 6.29A) [82], and also BINOL-based catalysts 178 were found to facilitate this reaction with excellent selectivities [83]. TADDOLs were also successfully used as organocatalysts for other asymmetric transformations like Mukaiyama aldol reactions, nitroso aldol reactions, or Strecker reactions to mention a few examples only [84]. In addition, also BINOL derivatives have been employed as efficient chiral H-bonding activators as exemplified in the Morita-Baylis-Hilhnan reaction of enone 184 with different carbaldehydes 86 [85]. The use of chiral squaramides for asymmetric reactions dates back to 2005 when Xie et al. first used camphor-derived squaric amino alcohols as ligands in borane reductions [86]. The first truly organocatalytic application was described by Rawal et al. in 2008 who found that minute amounts of the bifunctional cinchona alkaloid-based squaramide 180 are... [Pg.217]


See other pages where Asymmetric reductions, cinchona-based organocatalysts is mentioned: [Pg.125]    [Pg.107]   
See also in sourсe #XX -- [ Pg.125 , Pg.127 ]




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Asymmetric organocatalysts

Asymmetric reduction

Asymmetric reductions, cinchona-based

Asymmetrical reduction

Cinchona

Cinchona bases

Cinchona organocatalysts

Organocatalyst reduction

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