Singhal Nidhi, Koner Apurba L, Mal Prasenjit, Venugopalan Paloth, Nau Werner M, Moorthy Jarugu Narasimha
Department of Chemistry, Indian Institute of Technology, Kanpur 208 016, India.
J Am Chem Soc. 2005 Oct 19;127(41):14375-82. doi: 10.1021/ja0523643.
The diastereomers of ketones 2 and 3 are shown to exhibit distinct photochemical reactivities due to conformational preferences; while the anti isomers of 2 and 3 undergo efficient Yang cyclization in 75-90% yields with a remarkable diastereoselectivity (> 90%), the syn isomers predominantly undergo Norrish Type II elimination. The differences in the product profiles of the diastereomers are consistent with a mechanistic picture involving the formation of precursor diastereomeric triplet 1,4-biradicals in which the substituents at alpha and beta-positions stabilize the cisoid (cyclization) or transoid (elimination) geometry. The fact that such a diastereomeric relationship does indeed ensue at the triplet-excited-state itself is demonstrated via the nanosecond laser-flash photolysis of model ketones 1. The diastereomeric discrimination in the product profiles observed for ketones 2 and 3 as well as in the triplet lifetimes observed for ketones 1 can both be mechanistically traced back to different conformational preferences of the ground-state diastereomeric ketones and the intermediary 1,4-biradicals. Additionally, it emerges from the present study that the syn and anti diastereomers of ketones 2 and 3 represent two extremes of a broad range of widely examined butyrophenones, which lead to varying degrees of Yang photocyclization depending on the alkyl substitution pattern.
酮2和3的非对映异构体由于构象偏好而表现出不同的光化学反应活性;虽然2和3的反式异构体以75-90%的产率高效地进行杨环化反应,具有显著的非对映选择性(>90%),但顺式异构体主要进行Norrish II型消除反应。非对映异构体产物分布的差异与一种机理相符,该机理涉及前体非对映三重态1,4-双自由基的形成,其中α和β位的取代基稳定了顺式(环化)或反式(消除)几何结构。通过对模型酮1的纳秒激光闪光光解证明,在三重态激发态本身确实存在这种非对映关系。在酮2和3观察到的产物分布中的非对映体区分以及在酮1观察到的三重态寿命中的非对映体区分,都可以从机理上追溯到基态非对映异构酮和中间体1,4-双自由基的不同构象偏好。此外,本研究表明,酮2和3的顺式和反式非对映异构体代表了广泛研究的一系列丁酰苯的两个极端,根据烷基取代模式,它们会导致不同程度的杨光环化反应。