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Organocatalytic atroposelective synthesis of axially chiral styrenes.


ABSTRACT: Axially chiral compounds are widespread in biologically active compounds and are useful chiral ligands or organocatalysts in asymmetric catalysis. It is well-known that styrenes are one of the most abundant and principal feedstocks and thus represent excellent prospective building blocks for chemical synthesis. Driven by the development of atroposelective synthesis of axially chiral styrene derivatives, we discovered herein the asymmetric organocatalytic approach via direct Michael addition reaction of substituted diones/ketone esters/malononitrile to alkynals. The axially chiral styrene compounds were produced with good chemical yields, enantioselectivities and almost complete E/Z-selectivities through a secondary amine-catalysed iminium activation strategy under mild conditions. Such structural motifs are important precursors for further transformations into biologically active compounds and synthetic useful intermediates and may have potential applications in asymmetric synthesis as olefin ligands or organocatalysts.

SUBMITTER: Zheng SC 

PROVIDER: S-EPMC5418600 | biostudies-literature | 2017 May

REPOSITORIES: biostudies-literature

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Organocatalytic atroposelective synthesis of axially chiral styrenes.

Zheng Sheng-Cai SC   Wu San S   Zhou Qinghai Q   Chung Lung Wa LW   Ye Liu L   Tan Bin B  

Nature communications 20170503


Axially chiral compounds are widespread in biologically active compounds and are useful chiral ligands or organocatalysts in asymmetric catalysis. It is well-known that styrenes are one of the most abundant and principal feedstocks and thus represent excellent prospective building blocks for chemical synthesis. Driven by the development of atroposelective synthesis of axially chiral styrene derivatives, we discovered herein the asymmetric organocatalytic approach via direct Michael addition reac  ...[more]

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