Department of Chemistry , Princeton University , Princeton , New Jersey 08544 , United States.
J Am Chem Soc. 2018 Mar 7;140(9):3394-3402. doi: 10.1021/jacs.7b13616. Epub 2018 Feb 21.
While interest in the synthetic chemistry of radical cations continues to grow, controlling enantioselectivity in the reactions of these intermediates remains a challenge. Based on recent insights into the oxidation of tryptophan in enzymatic systems, we report a photocatalytic method for the generation of indole radical cations as hydrogen-bonded adducts with chiral phosphate anions. These noncovalent open-shell complexes can be intercepted by the stable nitroxyl radical TEMPO· to form alkoxyamine-substituted pyrroloindolines with high levels of enantioselectivity. Further elaboration of these optically enriched adducts can be achieved via a catalytic single-electron oxidation/mesolytic cleavage sequence to furnish transient carbocation intermediates that may be intercepted by a wide range of nucleophiles. Taken together, this two-step sequence provides a simple catalytic method to access a wide range of substituted pyrroloindolines in enantioenriched form via a standard experimental protocol from a common synthetic intermediate. The design, development, mechanistic study, and scope of this process are presented, as are applications of this method to the synthesis of several dimeric pyrroloindoline natural products.
虽然人们对自由基阳离子的合成化学兴趣持续增长,但控制这些中间体反应的对映选择性仍然是一个挑战。基于最近在酶系统中色氨酸氧化方面的研究进展,我们报告了一种光催化方法,用于生成吲哚自由基阳离子,作为与手性磷酸阴离子形成氢键加合物。这些非共价的开壳层复合物可以被稳定的氮氧自由基 TEMPO·捕获,形成具有高对映选择性的烷氧基胺取代的吡咯并吲哚啉。通过催化单电子氧化/介裂裂解序列进一步修饰这些光学富集的加合物,可以得到瞬态碳正离子中间体,这些中间体可能被广泛的亲核试剂捕获。总的来说,这种两步序列提供了一种简单的催化方法,通过从常见的合成中间体开始的标准实验方案,以对映体富集的形式获得广泛的取代的吡咯并吲哚啉。介绍了该方法的设计、开发、机理研究和范围,以及该方法在手性二聚吡咯并吲哚啉天然产物合成中的应用。