化学
环氧乙烷
激进的
反应性(心理学)
芳基
光催化
光化学
烷基
催化作用
高分子化学
有机化学
光催化
医学
病理
替代医学
作者
Maryne A. J. Dubois,Juan J. Rojas,Alistair J. Sterling,Hannah C. Broderick,Milo A. Smith,Andrew J. P. White,Philip W. Miller,Chulho Choi,James J. Mousseau,Fernanda Duarte,James A. Bull
标识
DOI:10.1021/acs.joc.3c00083
摘要
Four-membered heterocycles offer exciting potential as small polar motifs in medicinal chemistry but require further methods for incorporation. Photoredox catalysis is a powerful method for the mild generation of alkyl radicals for C-C bond formation. The effect of ring strain on radical reactivity is not well understood, with no studies that address this question systematically. Examples of reactions that involve benzylic radicals are rare, and their reactivity is challenging to harness. This work develops a radical functionalization of benzylic oxetanes and azetidines using visible light photoredox catalysis to prepare 3-aryl-3-alkyl substituted derivatives and assesses the influence of ring strain and heterosubstitution on the reactivity of small-ring radicals. 3-Aryl-3-carboxylic acid oxetanes and azetidines are suitable precursors to tertiary benzylic oxetane/azetidine radicals which undergo conjugate addition into activated alkenes. We compare the reactivity of oxetane radicals to other benzylic systems. Computational studies indicate that Giese additions of unstrained benzylic radicals into acrylates are reversible and result in low yields and radical dimerization. Benzylic radicals as part of a strained ring, however, are less stable and more π-delocalized, decreasing dimer and increasing Giese product formation. Oxetanes show high product yields due to ring strain and Bent's rule rendering the Giese addition irreversible.
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