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Helical Oligourea Foldamers as Powerful Hydrogen Bonding Catalysts for Enantioselective C–C Bond-Forming Reactions
Author(s) -
Diane Bécart,
Vincent Diemer,
Arnaud Salaün,
Mikel Oiarbide,
Yella Reddy Nelli,
Brice Kauffmann,
Lucile Fischer,
Claudio Palomo,
Gilles Guichard
Publication year - 2017
Publication title -
journal of the american chemical society
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 7.115
H-Index - 612
eISSN - 1520-5126
pISSN - 0002-7863
DOI - 10.1021/jacs.7b05802
Subject(s) - chemistry , enantioselective synthesis , foldamer , catalysis , combinatorial chemistry , hydrogen bond , amine gas treating , selectivity , thio , folding (dsp implementation) , organic chemistry , molecule , stereochemistry , electrical engineering , engineering
Substantial progress has been made toward the development of metal-free catalysts of enantioselective transformations, yet the discovery of organic catalysts effective at low catalyst loadings remains a major challenge. Here we report a novel synergistic catalyst combination system consisting of a peptide-inspired chiral helical (thio)urea oligomer and a simple tertiary amine that is able to promote the Michael reaction between enolizable carbonyl compounds and nitroolefins with excellent enantioselectivities at exceptionally low (1/10 000) chiral catalyst/substrate molar ratios. In addition to high selectivity, which correlates strongly with helix folding, the system we report here is also highly amenable to optimization, as each of its components can be fine-tuned separately to increase reaction rates and/or selectivities. The predictability of the foldamer secondary structure coupled to the high level of control over the primary sequence results in a system with significant potential for future catalyst design.

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