Chemistry Research Laboratory, University of Oxford, 12 Mansfield Road, Oxford, OX1 3TA, U.K.
Department of Chemistry, Colorado State University, 1301 Center Avenue, Ft. Collins, Colorado 80523-1872, United States.
J Am Chem Soc. 2023 Jan 11;145(1):171-178. doi: 10.1021/jacs.2c09267. Epub 2022 Dec 26.
Controlling absolute stereochemistry in catalytic photochemical reactions is generally challenging owing to high rates of background reactivity. Successful strategies broadly rely on selective excitation of the reaction substrate when associated with a chiral catalyst. Recent studies have demonstrated that chiral Lewis acid complexes can enable selective energy transfer from a photosensitizer to facilitate enantioselective triplet state reactions. Here, we apply this approach to the enantioselective catalysis of a 6π photocyclization through the design of an iridium photosensitizer optimized to undergo energy transfer to a reaction substrate only in the presence of a chiral Lewis acid complex. Among a group of iridium(III) sensitizers, enantioselectivity and yield closely correlate with photocatalyst triplet energy within a narrow window enabled by a modest reduction in substrate triplet energy upon binding a scandium/ligand complex. These results demonstrate that photocatalyst tuning offers a means to suppress background reactivity and improve enantioselectivity in photochemical reactions.
由于背景反应速率较高,控制催化光化学反应中的绝对立体化学通常具有挑战性。成功的策略通常依赖于当与手性催化剂结合时,对反应底物的选择性激发。最近的研究表明,手性路易斯酸配合物可以实现从光引发剂的选择性能量转移,以促进对映选择性三重态反应。在这里,我们通过设计仅在存在手性路易斯酸配合物的情况下才能向反应底物进行能量转移的铱光引发剂,将这种方法应用于通过 6π 光环化的对映选择性催化。在一组铱(III)敏化剂中,对映选择性和产率与光催化剂三重态能量密切相关,在与钪/配体配合物结合时,通过适度降低底物三重态能量,在一个狭窄的窗口内实现了这一点。这些结果表明,光催化剂的调整提供了一种抑制背景反应并提高光化学反应对映选择性的方法。