Department of Chemistry, Chemistry Research Laboratory, University of Oxford, 12 Mansfield Road, Oxford, OX1 3TA, UK.
Current address: Department of Pharmaceutical and Biological Chemistry, UCL (University College London), School of Pharmacy, 29-39 Brunswick Square, London, WC1N 1AX, UK.
Angew Chem Int Ed Engl. 2021 Nov 2;60(45):24116-24123. doi: 10.1002/anie.202107253. Epub 2021 Oct 13.
A reagent-controlled stereodivergent carbocyclisation of aryl aldimine-derived, photocatalytically generated, α-amino radicals possessing adjacent conjugated alkenes, affording either bicyclic or tetracyclic products, is described. Under net reductive conditions using commercial Hantzsch ester, the α-amino radical species underwent a single stereoselective cyclisation to give trans-configured amino-indane structures in good yield, whereas using a substituted Hantzsch ester as a milder reductant afforded cis-fused tetracyclic tetrahydroquinoline frameworks, resulting from two consecutive radical cyclisations. Judicious choice of the reaction conditions allowed libraries of both single and dual cyclisation products to be synthesised with high selectivity, notable predictability, and good-to-excellent yields. Computational analysis employing DFT revealed the reaction pathway and mechanistic rationale behind this finely balanced yet readily controlled photocatalytic system.
一种试剂控制的立体发散的碳环化反应,涉及芳基亚胺衍生的、光催化生成的、具有相邻共轭烯烃的α-氨基自由基,可得到双环或四环产物。在使用商业 Hantzsch 酯的净还原条件下,α-氨基自由基物种经历了单一的立体选择性环化反应,以良好的收率得到反式构型的氨基茚满结构,而使用取代的 Hantzsch 酯作为更温和的还原剂则得到顺式稠合的四环四氢喹啉骨架,这是由两个连续的自由基环化反应产生的。明智地选择反应条件允许以高选择性、显著的可预测性和良好到优异的收率来合成单环和双环化产物的文库。采用 DFT 的计算分析揭示了这种精细平衡但易于控制的光催化体系背后的反应途径和机理。