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邻炔基芳烃与杂芳烃甲醛衍生物与碘鎓离子及亲核试剂的反应:1H-异苯并呋喃、萘、吲哚、苯并呋喃和苯并噻吩化合物的通用且区域选择性合成

The reaction of o-alkynylarene and heteroarene carboxaldehyde derivatives with iodonium ions and nucleophiles: a versatile and regioselective synthesis of 1H-isochromene, naphthalene, indole, benzofuran, and benzothiophene compounds.

作者信息

Barluenga José, Vázquez-Villa Henar, Merino Isabel, Ballesteros Alfredo, González José M

机构信息

Instituto Universitario de Química Organometálica Enrique Moles, Unidad Asociada al C.S.I.C., Universidad de Oviedo, C/Julián Clavería, 8, 33006 Oviedo, Spain.

出版信息

Chemistry. 2006 Jul 24;12(22):5790-805. doi: 10.1002/chem.200501505.

DOI:10.1002/chem.200501505
PMID:16710863
Abstract

The reaction of o-alkynylbenzaldehydes 1 with different alcohols, silylated nucleophiles 5, electron-rich arenes 10, and heteroarenes 12 in the presence of the reagent IPy(2)BF(4), at room temperature, gave functionalized 4-iodo-1H-isochromenes 2, 6, 11, and 13 in a regioselective manner. When alkynes 16 and alkenes 19 and 20 were used as nucleophiles, a regioselective benzannulation reaction took place to form 1-iodonaphthalenes 17 and 1-naphthyl ketones 18, respectively. Moreover, the latter process has been adapted to accomplish the synthesis of indole, benzofuran, and benzothiophene derivatives (23, 27, and 28, respectively). The three patterns of reactivity observed for the o-alkynylbenzaldehyde derivatives with IPy(2)BF(4) stem from a common iodinated isobenzopyrylium ion intermediate, A, that evolves in a different way depending on the nucleophile present in the reaction medium. A mechanism is proposed and the different reaction pathways observed as a function of the type of nucleophile are discussed. Furthermore, the reaction of the o-hexynylbenzaldehyde 1 b with styrene was monitored by NMR spectroscopy. Compound III, a resting state for the common intermediate in the absence of acid, has been isolated. Its evolution in acid media has been also tested, thereby providing support to the proposed mechanism.

摘要

在室温下,邻炔基苯甲醛1与不同的醇、硅烷基化亲核试剂5、富电子芳烃10和杂芳烃12在试剂IPy(2)BF(4)存在下反应,以区域选择性方式生成官能化的4-碘-1H-异苯并色烯2、6、11和13。当炔烃16以及烯烃19和20用作亲核试剂时,分别发生区域选择性的苯并环化反应,生成1-碘萘17和1-萘基酮18。此外,后一过程已被用于完成吲哚、苯并呋喃和苯并噻吩衍生物(分别为23、27和28)的合成。邻炔基苯甲醛衍生物与IPy(2)BF(4)反应观察到的三种反应模式源于一个常见的碘化异苯并吡喃鎓离子中间体A,该中间体根据反应介质中存在的亲核试剂以不同方式演化。提出了一种机理,并讨论了根据亲核试剂类型观察到的不同反应途径。此外,通过核磁共振光谱监测了邻己炔基苯甲醛1b与苯乙烯的反应。化合物III,即无酸时常见中间体的静止状态,已被分离出来。还测试了其在酸性介质中的演化,从而为所提出的机理提供了支持。

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