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Photocycloaddition reaction of atropisomeric maleimides: mechanism and selectivity

机译:阻转马来酰亚胺的光环加成反应:机理和选择性

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摘要

We report a density functional study on the mechanism of the [2+2] photocyclization of atropisomeric maleimides. Experimentally, the reaction is known to proceed through the triplet state. We have located all relevant S and T minima and transition states, as well as the T/S crossing points, and mapped eight stepwise photocyclization pathways for four different conformers in the T state that lead to distinct regioisomers. In the preferred four pathways (one for each conformer) the initially formed C–C bond involves the terminal carbon atom of the alkene moiety. This regioselectivity originates from electrostatic preferences (arising from the charge distribution in the polarized C=C double bonds) and from the different thermodynamic stability of the resulting triplet diradical intermediates (caused by electron donation effects that stabilize the radical centers). The formation of the second C–C bond is blocked in the T1 state by prohibitively high barriers and thus occurs after intersystem crossing to the ground state. Furthermore, we rationalize substitution effects on enantioselectivity and diastereoselectivity and identify their origin.
机译:我们报告了对[2 + 2]光环化的对转异构马来酰亚胺机制的密度泛函研究。实验上,已知该反应通过三重态进行。我们已经找到了所有相关的S和T最小值和过渡态,以及T / S交叉点,并为T状态中的四个不同构象体绘制了八种逐步的光环化途径,这些途径导致了不同的区域异构体。在优选的四个途径中(每个构象异构体一个),最初形成的C–C键涉及烯烃部分的末端碳原子。这种区域选择性源自于静电偏好(由极化的C = C双键中的电荷分布引起)和所得三重态双自由基中间体的不同热力学稳定性(由稳定自由基中心的电子给予效应引起)。第二个C–C键的形成在T1状态下被过高的势垒所阻止,因此在系统间穿越到基态后发生。此外,我们合理化了对映选择性和非对映选择性的替代作用,并确定了它们的起源。

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