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Application of the Baylis-Hillman reaction in the preparation of quinoline derivatives

机译:Baylis-Hillman反应在喹啉衍生物制备中的应用

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摘要

The reaction of various 2-nitrobenzaldehyde derivatives with methyl vinyl ketone (MVK) in the presence of 1,4-diazabicyclo[2.2.2]octane (DABCO) has afforded the Baylis-Hillman adducts in moderate to good yield. Dissolution of the catalyst in the solvent before the addition of the aldehyde was observed to improve the yield. Reduction of the Baylis-Hillman adducts was effected by catalytic hydrogenation using a 10% palladium-on- carbon catalyst in ethanol to give quinoline and quinoline-N-oxide derivatives and, in some cases, acyclic reduction products. All products were characterised using NMR and, where appropriate, HRMS methods. Selected quinoline-N-oxides were successfully converted to their corresponding quinoline derivatives using phosphorus tribromide (PBr₃) and DMF as solvent. Conjugate addition of the benzylamine and piperidine nucleophiles to the Baylis-Hillman adducts was also investigated but proved problematic, with one of the substrates undergoing a retro-Baylis-Hillman reaction to afford the aldehyde in ca. 40% yield, but seemingly only traces of the required product. Perkin-type coupling of two 2-methylquinolines with benzaldehyde was successfully effected to afford the desired styrylquinoline derivatives confirming the potential of the Baylis-Hillman approach to the construction of the analogues of known HIV-1 integrase inhibitors. Three ¹³C NMR chemical shift prediction programmes, viz., Chem Window, neural network and HOSE (hierarchically ordered spherical description of environment) methods were applied to selected representative compounds prepared in the project. The results from the three programmes correlated reasonably well with the experimental carbon-13 chemical shift data for each of the selected compounds.
机译:在1,4-二氮杂双环[2.2.2]辛烷(DABCO)存在下,各种2-硝基苯甲醛衍生物与甲基乙烯基酮(MVK)的反应提供了中等至良好收率的Baylis-Hillman加合物。观察到在添加醛之前催化剂在溶剂中的溶解提高了产率。 Baylis-Hillman加合物的还原反应是通过在乙醇中使用10%钯碳催化剂进行催化氢化来实现的,以生成喹啉和喹啉-N-氧化物衍生物,在某些情况下,还提供无环还原产物。所有产品均使用NMR和HRMS方法(如适用)表征。使用三溴化磷(PBr 4)和DMF作为溶剂,将选定的喹啉-N-氧化物成功地转化为其相应的喹啉衍生物。还研究了苄胺和哌啶亲核试剂向Baylis-Hillman加合物的共轭加成,但被证明是有问题的,其中一种底物经历了逆Baylis-Hillman反应以在约2-10℃提供醛。 40%的收率,但看似只有所需产品的痕迹。成功地实现了两个2-甲基喹啉与苯甲醛的珀金型偶联,以提供所需的苯乙烯基喹啉衍生物,从而证实了Baylis-Hillman方法在构建已知HIV-1整合酶抑制剂类似物方面的潜力。将三种13 C NMR化学位移预测程序,即“化学窗口”,神经网络和HOSE(环境的分层有序球形描述)方法应用于该项目中选择的代表性化合物。这三个程序的结果与每种所选化合物的实验碳13化学位移数据具有很好的相关性。

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    Pakade Vusumzi Emmanuel;

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  • 年度 2013
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  • 正文语种 English
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