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Double Asymmetric Synthesis and a New Strategy for Stereochemical Control in Organic Synthesis

Angewandte Chemie International Edition in English · 1985 · Vol. 24(1) · pp. 1–30
Satoru MasamuneWilliam ChoyJohn S. PetersenLawrence R. Sita

Abstract

Abstract This account examines double asymmetric induction from theoretical and practical viewpoints. In the context of four major organic reactions‐the aldol, Diels‐Alder, catalytic hydrogenation, and epoxidation‐it is shown that a double asymmetric induction can be analyzed in terms of the single asymmetric reactions of each of the two chiral reactants. A rule which qualitatively relates the results of these single asymmetric reactions with the outcome of the double asymmetric reaction is proposed. A powerful new strategy based on this rule for the predictable creation of new chiral centers is discussed and the use of this strategy for the synthesis of sugars and macrolides is presented.

Enzyme Catalysis and ImmobilizationChemical Synthesis and AnalysisAsymmetric Synthesis and CatalysisAsymmetric inductionEnantioselective synthesisAldol reactionContext (archaeology)Organic synthesisViewpointsChemistryCatalysisOutcome (game theory)Combinatorial chemistry
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References
“Topics in phosphorus chemistry”
Journal of Organometallic Chemistry · 1977 · 711 citations
Modern Synthetic Methods
Journal of Organometallic Chemistry · 1990 · 678 citations
The first practical method for asymmetric epoxidation
Journal of the American Chemical Society · 1980 · 2,603 citations
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