Towards tartaric-acid-derived asymmetric organocatalysts

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Abstract

Tartaric acid is one of the most prominent naturally occurring chiral compounds. Whereas its application in the production of chiral ligands for metal-catalysed reactions has been exhaustively investigated, its potential to provide new organocatalysts has been less extensively explored. Nevertheless, some impressive results, such as the use of TADDOLs as chiral H-bonding catalysts or of tartrate-derived asymmetric quaternary ammonium salt catalysts, have been reported over the last decade. The goal of this article is to provide a representative overview of the potential and the limitations of tartaric acid or TADDOLs in the creation of new organocatalysts and to highlight some of the most spectacular applications of these catalysts, as well as to summarize case studies in which other classes of chiral backbones were better suited. Tartaric acid is one of the most prominent naturally occurring chiral compounds. Whereas its application in the production of chiral ligands for metal-catalysed reactions has been exhaustively investigated, its potential to provide new organocatalysts has been less extensively explored. Nevertheless, some impressive results have been published over the last decade, and are the topic of this review. Copyright © 2013 WILEY-VCH Verlag GmbH & Co. KGaA, Weinheim.

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Gratzer, K., Gururaja, G. N., & Waser, M. (2013, July). Towards tartaric-acid-derived asymmetric organocatalysts. European Journal of Organic Chemistry. https://doi.org/10.1002/ejoc.201201675

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