Department of Chemistry, Imperial College London, South Kensington, London SW7 2AZ, United Kingdom.
J Org Chem. 2013 Jul 5;78(13):6632-47. doi: 10.1021/jo400956x. Epub 2013 Jun 18.
The preparation of C-iodo-N-Ts-aziridines with excellent cis-diastereoselectivity has been achieved in high yields by the addition of diiodomethyllithium to N-tosylimines and N-tosylimine-HSO2Tol adducts. This addition-cyclization protocol successfully provided a wide range of cis-iodoaziridines, including the first examples of alkyl-substituted iodoaziridines, with the reaction tolerating both aryl imines and alkyl imines. An ortho-chlorophenyl imine afforded a β-amino gem-diiodide under the optimized reaction conditions due to a postulated coordinated intermediate preventing cyclization. An effective protocol to assess the stability of the sensitive iodoaziridine functional group to chromatography was also developed. As a result of the judicious choice of stationary phase, the iodoaziridines could be purified by column chromatography; the use of deactivated basic alumina (activity IV) afforded high yield and purity. Rearrangements of electron-rich aryl-iodoaziridines have been promoted, selectively affording either novel α-iodo-N-Ts-imines or α-iodo-aldehydes in high yield.
通过二碘甲基锂与 N-对甲苯磺酰亚胺和 N-对甲苯磺酰亚胺-HSO2Tol 加合物的加成反应,以高产率实现了具有优异顺式非对映选择性的 C-碘-N-Ts-氮丙啶的制备。该加成-环化反应方案成功地提供了广泛的顺式碘代氮丙啶,包括第一个烷基取代的碘代氮丙啶的例子,该反应可耐受芳基亚胺和烷基亚胺。由于假定的配位中间体阻止环化,优化反应条件下邻氯苯基亚胺得到了β-氨基偕二碘化物。还开发了一种有效评估敏感碘代氮丙啶官能团对色谱稳定性的方法。由于选择了合适的固定相,碘代氮丙啶可以通过柱色谱法进行纯化;使用失活的碱性氧化铝(活性 IV)可获得高产率和高纯度。富电子芳基碘代氮丙啶的重排被促进,选择性地以高产率得到新型的α-碘-N-Ts-亚胺或α-碘醛。