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全氟烷基或全氟芳基取代的 4-羟基吡啶衍生物的三组分合成及其钯催化偶联反应。

Three-component synthesis of perfluoroalkyl- or perfluoroaryl-substituted 4-hydroxypyridine derivatives and their palladium-catalyzed coupling reactions.

机构信息

Institut für Chemie und Biochemie, Freie Universität Berlin, Takustrasse 3, 14195 Berlin, Germany.

出版信息

J Org Chem. 2010 Feb 5;75(3):726-32. doi: 10.1021/jo9022183.

Abstract

A three-component reaction with lithiated alkoxyallenes, nitriles, and perfluorinated carboxylic acids as precursors led to a series of perfluoroalkyl- or perfluoroaryl-substituted 4-hydroxypyridine derivatives. These compounds were converted into 4-pyridyl nonaflates which can be employed as versatile building blocks for the synthesis of pi-conjugated compounds with use of palladium-catalyzed couplings. Suzuki reactions at C-4 and C-3 of the pyridine ring proceeded with moderate to high yields. In addition, Suzuki-Miyaura, Stille, or Buchwald-Hartwig coupling reactions have also been studied and afforded the corresponding highly substituted pyridine derivatives. Starting from an arylated propargylic ether the three-component reaction led to a pentasubstituted 4-hydroxypyridine derivative that could also be employed in palladium-catalyzed processes at C-4 and at C-3 of the pyridine core. With this simple approach the sterically highly crowded 3,4,5-triphenyl-substituted pyridine derivative 37a could be prepared and studied by an X-ray analysis. With acetonitrile as precursor a different reaction pathway was found when this component was used in excess resulting in a pyridine derivative with a new substitution pattern. In summary, the methods described here allow a flexible and fairly efficient entry to a variety of highly substituted pyridine derivatives bearing perfluorinated alkyl or aryl groups.

摘要

以锂代烷氧基丙二炔、腈和全氟羧酸作为前体的三组分反应得到了一系列全氟烷基或全氟芳基取代的 4-羟基吡啶衍生物。这些化合物被转化为 4-吡啶壬酸酯,它们可以作为合成具有钯催化偶联的π共轭化合物的多功能构建块。在吡啶环的 C-4 和 C-3 位置进行的 Suzuki 反应具有中等至高产率。此外,还研究了 Suzuki-Miyaura、Stille 或 Buchwald-Hartwig 偶联反应,并得到了相应的高取代吡啶衍生物。从芳基丙炔基醚开始的三组分反应得到了五取代的 4-羟基吡啶衍生物,该衍生物也可以在钯催化的 C-4 和吡啶核的 C-3 位置的反应中使用。通过这种简单的方法,可以制备并通过 X 射线分析研究空间位阻较大的 3,4,5-三苯基取代的吡啶衍生物 37a。当过量使用乙腈作为前体时,发现了一条不同的反应途径,得到了具有新取代模式的吡啶衍生物。总之,这里描述的方法允许灵活且相当有效地进入各种具有全氟烷基或芳基取代的高度取代的吡啶衍生物。

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