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电子自旋反转过程中的选择性控制:Paternò-Büchi光环加成反应的区域化学和立体化学作为映射系间窜越过程的有力工具。

Selectivity control in electron spin inversion processes: regio- and stereochemistry of Paternò-Büchi photocycloadditions as a powerful tool for mapping intersystem crossing processes.

作者信息

Griesbeck Axel G, Abe Manabu, Bondock Samir

机构信息

Institute of Organic Chemistry, University of Cologne, Greinstrasse 4, 50939 Köln, Germany.

出版信息

Acc Chem Res. 2004 Dec;37(12):919-28. doi: 10.1021/ar040081u.

Abstract

Regio- and stereoselectivity in ene-carbonyl photocycloadditions depend on the spin multiplicity of the excited carbonyl state, although both singlet and triplet states produce the cycloadducts with comparable chemoselectivity. The correlation between selectivity and spin state was evaluated by concentration, temperature, and solvent viscosity studies. The higher selectivity observed for triplet reactions is rationalized by the optimal conformations of the intermediate 2-oxabutane-1,4-diyls for intersystem crossing (ISC) to the singlet manifold, controlled preferentially by spin-orbit coupling. This weak interaction connected with ISC can lead to substantial control of regio- and stereoselectivity. The role of hyperfine coupling is demonstrated by magnetic isotope effects.

摘要

烯-羰基光环加成反应中的区域选择性和立体选择性取决于激发态羰基的自旋多重性,尽管单重态和三重态都能产生具有相当化学选择性的环加成产物。通过浓度、温度和溶剂粘度研究评估了选择性与自旋态之间的相关性。三重态反应中观察到的较高选择性可通过中间体2-氧杂丁烷-1,4-二基的最佳构象来解释,这些构象有利于系间窜越(ISC)到单重态流形,优先受自旋-轨道耦合控制。这种与ISC相关的弱相互作用可导致对区域选择性和立体选择性的实质性控制。超精细耦合的作用通过磁同位素效应得到了证明。

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