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芳香自由基阳离子和苄基阳离子在二氯甲烷溶液中2,4,6-三苯基吡喃四氟硼酸盐光敏氧化环甲氧基化苄醇反应中的作用。

The role of aromatic radical cations and benzylic cations in the 2,4,6-triphenylpyrylium tetrafluoroborate photosensitized oxidation of ring-methoxylated benzyl alcohols in CH2Cl2 solution.

作者信息

Branchi Barbara, Bietti Massimo, Ercolani Gianfranco, Izquierdo M Angeles, Miranda Miguel A, Stella Lorenzo

机构信息

Dipartimento di Scienze e Tecnologie Chimiche, Università Tor Vergata, Via della Ricerca Scientifica, I-00133 Rome, Italy.

出版信息

J Org Chem. 2004 Dec 10;69(25):8874-85. doi: 10.1021/jo048546h.

Abstract

A steady-state and laser flash photolysis (LFP) study of the TPPBF(4)-photosensitized oxidation of ring-methoxylated benzyl alcohols has been carried out. Direct evidence on the involvement of intermediate benzyl alcohol radical cations and benzylic cations in these reactions has been provided through LFP experiments. The reactions lead to the formation of products (benzaldehydes, dibenzyl ethers, and diphenylmethanes) whose amounts and distributions are influenced by the number and relative position of the methoxy substituents. This behavior has been rationalized in terms of the interplay between the stabilities of benzyl alcohol radical cations and benzyl cations involved in these processes. A general mechanism for the TPPBF(4)-photosensitized reactions of ring-methoxylated benzyl alcohols has been proposed, where the alpha-OH group of the parent substrate acts as the deprotonating base promoting alpha-C-H deprotonation of the benzyl alcohol radical cation (formed after electron transfer from the benzyl alcohol to TPP) to give a benzyl radical and a protonated benzyl alcohol, precursor of the benzylic cation. This hypothesis is in contrast with previous studies, where formation of the benzyl cation was suggested to occur from the neutral benzyl alcohol through the Lewis acid action of excited TPP(+) (TPP).

摘要

开展了对TPPBF(4)光敏氧化环甲氧基化苯甲醇的稳态和激光闪光光解(LFP)研究。通过LFP实验提供了关于这些反应中中间体苯甲醇自由基阳离子和苄基阳离子参与的直接证据。这些反应导致产物(苯甲醛、二苄基醚和二苯甲烷)的形成,其数量和分布受甲氧基取代基的数量和相对位置影响。根据这些过程中涉及的苯甲醇自由基阳离子和苄基阳离子稳定性之间的相互作用,对这种行为进行了合理的解释。提出了环甲氧基化苯甲醇的TPPBF(4)光敏反应的一般机制,其中母体底物的α-OH基团作为去质子化碱,促进苯甲醇自由基阳离子(在电子从苯甲醇转移到TPP后形成)的α-C-H去质子化,生成苄基自由基和质子化苯甲醇,后者是苄基阳离子的前体。这一假设与先前的研究相反,先前的研究认为苄基阳离子是通过激发态TPP(+)(TPP)的路易斯酸作用从中性苯甲醇形成的。

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