4.3 Review

Asymmetric synthesis of fluorine-containing amines, amino alcohols, α- and β-amino acids mediated by chiral sulfinyl group

Journal

JOURNAL OF FLUORINE CHEMISTRY
Volume 131, Issue 2, Pages 127-139

Publisher

ELSEVIER SCIENCE SA
DOI: 10.1016/j.jfluchem.2009.09.015

Keywords

Fluorine and compounds; Sulfoxides; N-sulfinyl imines; alpha-Fluoroalkyl epoxides; alpha-Fluoroalkyl amino derivatives; alpha and beta-Amino acids; beta-Aminophosphonic acids

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This review article provides a critical overview of several different synthetic approaches developed for asymmetric preparation of fluorine-containing amines, amino alcohols, alpha- and beta-amino acids. The common feature of these methods is the application of sulfinyl group as a chiral auxiliary to control the stereochemical outcome of the reactions under study. In particular, the following general methods are critically discussed: diastereoselective methylene transfer from diazomethane to the carbonyl of beta-keto-gamma-fluoroalkyl sulfoxides as a general approach for preparation of various alpha-fluoroalkyl alpha-sulfinylalkyl oxiranes. The resulting compounds were used as true chiral synthons for their further elaboration via oxidative or reductive desulfurization, to numerous fluorine-containing and biologically relevant amino- and hydroxy-containing derivatives. Another general approaches discussed here are asymmetric additions to C=N double bond. One of them is addition of chiral sulfoxide stabilized carbon nucleophiles to fluorine-containing imines, leading to convenient preparation of alpha-fluoroalkyl derivatives of alpha amino acids and amines. Another approach is asymmetric Reformatsky reaction between N-sulfinyl imines and ethyl bromodifluoroacetate allowing operationally convenient preparation of alpha,alpha-difluoro-beta-amino acids in enantiomerically pure form. Finally, structurally similar but mechanistically different addition reactions of diethyl difluoromethylphosphonate to N-sulfinyl imines, as a general approach to asymmetric synthesis of alpha,alpha-difluoro-beta-aminophosphonates and phosphonic acids, are discussed. Effect of fluorine on the mechanism and stereochemical outcome of these reactions is discussed in detail and compared, where it is possible, with that of the analogous reactions of fluorine-free substrates. (C) 2009 Elsevier B.V. All rights reserved.

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