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钯钳形配合物催化的官能化炔丙基底物的三甲基锡取代反应。合成炔丙基锡和烯丙基锡的有效途径。

Palladium pincer complex-catalyzed trimethyltin substitution of functionalized propargylic substrates. An efficient route to propargyl- and allenyl-stannanes.

作者信息

Kjellgren Johan, Sundén Henrik, Szabó Kálmán J

机构信息

Department of Organic Chemistry, Stockholm University, SE-106 91 Stockholm, Sweden.

出版信息

J Am Chem Soc. 2004 Jan 21;126(2):474-5. doi: 10.1021/ja0391715.

Abstract

Palladium pincer complex-catalyzed reaction of functionalized propargyl chloride (and mesylate) derivatives with hexamethylditin gives allenyl- and propargyl-stannane products. This catalytic activity is in sharp contrast with the reactivity of commonly used palladium(0) catalysts inducing addition of hexamethylditin to the triple bond. The product distribution of the pincer complex-catalyzed reaction is controlled by the substituent effects of the propargylic substrate: electron-withdrawing functionalities give mainly allenyl stannane products, while with electron-donating groups the main product is propargyl stannane. The catalytic reaction proceeds under very mild conditions tolerating many functionalities such as OH, OAc, NR3, and NR2Ac groups. Our mechanistic studies indicate that the key intermediate of the reaction is a monotrimethylstannane palladium pincer complex. A remarkable feature of the studied catalytic process is that the palladium catalyst does not undergo redox reactions, but its oxidation state is restricted to palladium(II). Since palladium(0) intermediates does not occur in this process, the catalyst is very stable and highly chemoselective.

摘要

钯钳形配合物催化功能化炔丙基氯(和甲磺酸酯)衍生物与六甲基二锡反应生成烯丙基锡和炔丙基锡产物。这种催化活性与常用钯(0)催化剂促使六甲基二锡加成到三键上的反应活性形成鲜明对比。钳形配合物催化反应的产物分布受炔丙基底物取代基效应的控制:吸电子官能团主要生成烯丙基锡产物,而给电子基团时主要产物是炔丙基锡。催化反应在非常温和的条件下进行,能耐受许多官能团,如OH、OAc、NR3和NR2Ac基团。我们的机理研究表明,反应的关键中间体是单三甲基锡钯钳形配合物。所研究催化过程的一个显著特点是钯催化剂不发生氧化还原反应,其氧化态限于钯(II)。由于在此过程中不出现钯(0)中间体,该催化剂非常稳定且具有高度化学选择性。

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