Portela-Cubillo Fernando, Scott Jackie S, Walton John C
School of Chemistry, University of St. Andrews, EaStChem, St. Andrews, Fife KY16 9ST, UK.
J Org Chem. 2009 Jul 17;74(14):4934-42. doi: 10.1021/jo900629g.
A wide range of biologically active compounds contain the quinazoline ring system. A new free-radical-based method of making functionalized quinazolines is described, which relies on microwave-promoted reactions of O-phenyl oximes with aldehydes. A small set of 2-aminoaryl alkanone O-phenyl oximes was prepared and shown to produce dihydroquinazolines when mixed with an aldehyde in toluene and subjected to microwave heating. When ZnCl(2) was included in the reaction mixture, fully aromatic quinazolines were produced in high yields by a rapid and convenient process. The method worked well with alkyl, aryl, and heterocyclic aldehydes and for a variety of substituents in the benzenic part of the molecule. Similar reactions employing ketones instead of aldehydes were less efficient. Although some dihydroquinazolines did form, they were accompanied by several byproducts. Surprisingly, in each case, one of the byproducts was a quinoline derivative, and a plausible mechanism to account for this rearrangement is proposed.
多种生物活性化合物含有喹唑啉环系。本文描述了一种基于自由基的制备功能化喹唑啉的新方法,该方法依赖于邻苯基肟与醛的微波促进反应。制备了一小系列2-氨基芳基烷酮邻苯基肟,并表明当它们在甲苯中与醛混合并进行微波加热时会生成二氢喹唑啉。当反应混合物中加入ZnCl₂时,通过快速简便的过程可高产率地生成全芳香喹唑啉。该方法对烷基、芳基和杂环醛以及分子苯部分的各种取代基都适用。使用酮代替醛的类似反应效率较低。虽然确实形成了一些二氢喹唑啉,但它们伴有几种副产物。令人惊讶的是,在每种情况下,其中一种副产物是喹啉衍生物,并提出了一种解释这种重排的合理机制。