| Literature DB >> 33595902 |
Martin T Peschel1, Piotr Kabaciński2, Daniel P Schwinger3, Erling Thyrhaug3, Giulio Cerullo2, Thorsten Bach3, Jürgen Hauer3, Regina de Vivie-Riedle1.
Abstract
Lewis acids have recently been recognized as catalysts enabling enantioselective photochemical transformations. Mechanistic studies on these systems are however rare, either due to their absorption at wavelengths shorter than 260 nm, or due to the limitations of theoretical dynamic studies for larger complexes. In this work, we overcome these challenges and employ sub-30-fs transient absorption in the UV, in combination with a highly accurate theoretical treatment on the XMS-CASPT2 level. We investigate 2-cyclohexenone and its complex to boron trifluoride and analyze the observed dynamics based on trajectory calculations including non-adiabatic coupling and intersystem crossing. This approach explains all ultrafast decay pathways observed in the complex. We show that the Lewis acid remains attached to the substrate in the triplet state, which in turn explains why chiral boron-based Lewis acids induce a high enantioselectivity in photocycloaddition reactions.Entities:
Keywords: calculations; enones; lewis acids; photochemistry; time-resolved spectroscopy
Year: 2021 PMID: 33595902 DOI: 10.1002/anie.202016653
Source DB: PubMed Journal: Angew Chem Int Ed Engl ISSN: 1433-7851 Impact factor: 15.336