Peschel Martin T, Kabaciński Piotr, Schwinger Daniel P, Thyrhaug Erling, Cerullo Giulio, Bach Thorsten, Hauer Jürgen, de Vivie-Riedle Regina
Department Chemie, Ludwig-Maximilians-Universität München, 81377, München, Germany.
IFN-CNR and Dipartimento di Fisica, Politecnico di Milano, 20133, Milano, Italy.
Angew Chem Int Ed Engl. 2021 Apr 26;60(18):10155-10163. doi: 10.1002/anie.202016653. Epub 2021 Mar 23.
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.
路易斯酸最近被认为是能够实现对映选择性光化学转化的催化剂。然而,由于这些体系在波长小于260 nm处有吸收,或者由于对较大配合物进行理论动力学研究存在局限性,对这些体系的机理研究很少。在这项工作中,我们克服了这些挑战,采用了紫外波段低于30飞秒的瞬态吸收技术,并结合了XMS - CASPT2水平的高精度理论处理方法。我们研究了2 - 环己烯酮及其与三氟化硼的配合物,并基于包括非绝热耦合和系间窜越的轨迹计算来分析观察到的动力学过程。这种方法解释了在该配合物中观察到的所有超快衰变途径。我们表明,路易斯酸在三重态下仍与底物相连,这反过来解释了为什么手性硼基路易斯酸在光环加成反应中能诱导出高对映选择性。