Crich David, Grant Daniel, Krishnamurthy Venkataramanan, Patel Mitesh
Department of Chemistry, University of Illinois at Chicago, IL 60607-7061, USA.
Acc Chem Res. 2007 Jun;40(6):453-63. doi: 10.1021/ar600020v. Epub 2007 May 10.
The discovery and development of the catalysis of stannane-mediated radical chain reactions by benzeneselenol, generated in situ by reduction of diphenyl diselenide with tributyltin hydride, are described. The catalytic sequence is discussed in terms of polarity reversal catalysis of radical chain reactions, and applications to synthesis are presented. These include the prevention of numerous radical rearrangement reactions, the ability to intervene in certain multistep radical rearrangements, especially aryl and vinyl radical cyclizations, at intermediate stages with advantages to the product profile, and the effective trapping of allyl-, benzyl-, and cyclohexadienyl-type radicals, permitting inter alia the isolation of aryl cyclohexadienes and their application in synthesis.
本文描述了通过用三丁基氢化锡还原二苯基二硒醚原位生成的苯硒醇对锡烷介导的自由基链反应的催化作用的发现与发展。从自由基链反应的极性反转催化角度讨论了催化序列,并介绍了其在合成中的应用。这些应用包括防止众多自由基重排反应、在某些多步自由基重排(特别是芳基和乙烯基自由基环化)的中间阶段进行干预并对产物分布有利、有效捕获烯丙基型、苄基型和环己二烯基型自由基,尤其能够分离出芳基环己二烯并将其应用于合成。