| Literature DB >> 31856373 |
Claire M Young1, Alex Elmi2, Dominic J Pascoe2, Rylie K Morris3, Calum McLaughlin1, Andrew M Woods1, Aileen B Frost1, Alix de la Houpliere1, Kenneth B Ling4, Terry K Smith1, Alexandra M Z Slawin1, Patrick H Willoughby3, Scott L Cockroft2, Andrew D Smith1.
Abstract
The importance of 1,5-O⋅⋅⋅chalcogen (Ch) interactions in isochalcogenourea catalysis (Ch=O, S, Se) is investigated. Conformational analyses of N-acyl isochalcogenouronium species and comparison with kinetic data demonstrate the significance of 1,5-O⋅⋅⋅Ch interactions in enantioselective catalysis. Importantly, the selenium analogue demonstrates enhanced rate and selectivity profiles across a range of reaction processes including nitronate conjugate addition and formal [4+2] cycloadditions. A gram-scale synthesis of the most active selenium analogue was developed using a previously unreported seleno-Hugerschoff reaction, allowing the challenging kinetic resolutions of tertiary alcohols to be performed at 500 ppm catalyst loading. Density functional theory (DFT) and natural bond orbital (NBO) calculations support the role of orbital delocalization (occurring by intramolecular chalcogen bonding) in determining the conformation, equilibrium population, and reactivity of N-acylated intermediates.Entities:
Keywords: asymmetric catalysis; chalcogen bonding; isoselenoureas; isothioureas; organocatalysis
Year: 2020 PMID: 31856373 DOI: 10.1002/anie.201914421
Source DB: PubMed Journal: Angew Chem Int Ed Engl ISSN: 1433-7851 Impact factor: 15.336