2005Advanced Synthesis & CatalysisRequires access

Guanidine‐Thiourea Bifunctional Organocatalyst for the Asymmetric Henry (Nitroaldol) Reaction

Yoshihiro Sohtome, Yuichi Hashimoto, Kazuo Nagasawa

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Abstract

Abstract Novel bifunctional catalysts having guanidine and thiourea functional groups were developed for the asymmetric Henry (nitroaldol) reaction. Various structural developments of the catalyst revealed that the compound having an octadecyl‐substituted guanidine and thiourea groups linked with a chiral spacer derived from phenylalanine, i.e., 1e, efficiently promoted the Henry reaction. This bifunctional organocatalyst 1e also gave high asymmetric inductions with aliphatic cyclic aldehydes and branched aliphatic aldehydes (82–90% ee).

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What this paper is about

Abstract Novel bifunctional catalysts having guanidine and thiourea functional groups were developed for the asymmetric Henry (nitroaldol) reaction. Various structural developments of the catalyst revealed that the compound having an octadecyl‐substituted guanidine and thiourea groups linked with a chiral spacer derived from phenylalanine, i.e., 1e, efficiently promoted the Henry reaction. This bifunctional organocatalyst 1e also gave high asymmetric inductions with aliphatic cyclic aldehydes and branched aliphatic aldehydes (82–90% ee).

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Available abstract

Abstract Novel bifunctional catalysts having guanidine and thiourea functional groups were developed for the asymmetric Henry (nitroaldol) reaction. Various structural developments of the catalyst revealed that the compound having an octadecyl‐substituted guanidine and thiourea groups linked with a chiral spacer derived from phenylalanine, i.e., 1e, efficiently promoted the Henry reaction. This bifunctional organocatalyst 1e also gave high asymmetric inductions with aliphatic cyclic aldehydes and branched aliphatic aldehydes (82–90% ee).

Key concepts: Thiourea, Bifunctional, Chemistry, Guanidine, Nitroaldol reaction, Organocatalysis, Enantioselective synthesis, Catalysis

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