Zhan Shao-Cong, Fang Ren-Jie, Sun Jing, Yan Chao-Guo
College of Chemistry & Chemical Engineering, Yangzhou University, Yangzhou 225002, China.
Org Biomol Chem. 2021 Jul 21;19(28):6322-6327. doi: 10.1039/d1ob01113h.
Functionalized spiro[carbazole-3,5'-pyrimidines] and spiro[carbazole-3,1'-cyclohexanes] were efficiently synthesized in satisfactory yields with high diastereoselectivity by CuSO4 catalyzed multicomponent reaction of indole-2-acetate, aromatic aldehyde and 1,3-dimethylbarbituric acid or dimedone. The reaction was finished with sequential Diels-Alder reaction of both in situ generated indole-2,3-quinodimethane and a dienophile. Additionally, the initially formed spiro[carbazole-3,5'-pyrimidines] were converted to dehydrogenated spiro[carbazole-3,5'-pyrimidines] by DDQ oxidation. The initially formed spiro[carbazole-3,1'-cyclohexanes] were converted to δ-valerolactone-substituted carbazoles by a DDQ promoted Baeyer-Villiger oxidation process.
通过硫酸铜催化吲哚 - 2 - 乙酸、芳香醛与1,3 - 二甲基巴比妥酸或二甲基环己二酮的多组分反应,以令人满意的产率和高非对映选择性高效合成了功能化的螺[咔唑 - 3,5'-嘧啶]和螺[咔唑 - 3,1'-环己烷]。该反应通过原位生成的吲哚 - 2,3 - 醌二甲基甲烷与亲双烯体的顺序狄尔斯 - 阿尔德反应完成。此外,最初形成的螺[咔唑 - 3,5'-嘧啶]通过DDQ氧化转化为脱氢螺[咔唑 - 3,5'-嘧啶]。最初形成的螺[咔唑 - 3,1'-环己烷]通过DDQ促进的拜耳 - 维利格氧化过程转化为δ - 戊内酯取代的咔唑。