Literature DB >> 33764066

Asymmetric 1,4-Michael Addition in Aqueous Medium Using Hydrophobic Chiral Organocatalysts.

Chandan K Mahato1,2, Sayan Mukherjee2, Mrinalkanti Kundu1, Virbhadra P Vallapure1, Animesh Pramanik2.   

Abstract

Organic transformations exclusively in water as an environmentally friendly and safe medium have drawn significant interest in the recent years. Moreover, transition metal-free synthesis of enantiopure molecules in water will have a great deal of attention as the system will mimic the natural enzymatic reactions. In this work, a new set of proline-derived hydrophobic organocatalysts have been synthesized and utilized for asymmetric Michael reactions in water as the sole reaction medium. Among the various catalysts screened, the catalyst 1 is indeed efficient for stereoselective 1,4-conjugated Michael additions (dr: >97:3, ee up to >99.9%) resulting in high chemical yields (up to 95%) in a very short reaction time (1 h) at room temperature. This methodology provides a robust, green, and convenient protocol and can thus be an important addition to the arsenal of the asymmetric Michael addition reaction. Upon successful implementation, the present strategy also led to the formation of an optically active octahydroindole, the key component found in many natural products.

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Year:  2021        PMID: 33764066     DOI: 10.1021/acs.joc.1c00124

Source DB:  PubMed          Journal:  J Org Chem        ISSN: 0022-3263            Impact factor:   4.354


  1 in total

1.  Optimizing the Local Chemical Environment on a Bifunctional Helical Peptide Scaffold Enables Enhanced Enantioselectivity and Cooperative Catalysis.

Authors:  Adam X Wayment; Mariur Rodriguez Moreno; Carter J Jones; Gabriel J Smith; Parker Jarman; Nayeli J Garcia Morin; Morgan J Coombs; Jacob A Parkman; Connor D Barlow; Stacy Allington Smith; Scott R Burt; David J Michaelis
Journal:  Org Lett       Date:  2022-04-20       Impact factor: 6.072

  1 in total

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