Alves Diego, Luchese Cristiane, Nogueira Cristina W, Zeni Gilson
Laboratório de Síntese, Reatividade, Avaliação Farmacológica e Toxicológica de Organocalcogênios, CCNE, UFSM, Santa Maria, Rio Grande do Sul, Brazil, 97105-900.
J Org Chem. 2007 Aug 31;72(18):6726-34. doi: 10.1021/jo070835t. Epub 2007 Aug 10.
We present here our results of the electrophilic cyclization reaction of (Z)-selenoenynes with different electrophiles such as I(2), ICl, PhSeBr, and PhSeCl. The cyclization reaction proceeded cleanly under mild reaction conditions, and 3-substituted selenophenes were formed in moderate to excellent yields. We observed that the nature of solvent and structure of (Z)-selenoenyne were important to the cyclization reaction. In addition, the obtained 3-iodoselenophenes were readily transformed to more complex products using a metal-halogen exchange reaction with n-BuLi and trapping the intermediate formed with aldehydes, furnishing the desired secondary alcohols in good yields. Conversely, using the palladium or copper catalyzed cross-coupling reactions with terminal alkynes or alkyl alcohols, we were able to convert 3-iodoselenophene to Sonogashira or Ullmann type products, respectively, in good yields.
我们在此展示了(Z)-硒代烯炔与不同亲电试剂(如I₂、ICl、PhSeBr和PhSeCl)的亲电环化反应结果。环化反应在温和的反应条件下顺利进行,3-取代硒吩以中等至优异的产率生成。我们观察到溶剂的性质和(Z)-硒代烯炔的结构对环化反应很重要。此外,使用与正丁基锂的金属-卤素交换反应,并捕获与醛形成的中间体,所得到的3-碘硒吩很容易转化为更复杂的产物,以良好的产率提供所需的仲醇。相反,通过与末端炔烃或烷基醇的钯或铜催化交叉偶联反应,我们能够分别以良好的产率将3-碘硒吩转化为Sonogashira型或Ullmann型产物。