Camara Viktor S, da Silva Aislan L, da Luz Lilian C, Rodembusch Fabiano S, Santiago Pedro H O, Ellena Javier, Burtoloso Antonio C B
São Carlos Institute of Chemistry, University of São Paulo, São Carlos, SP 13560-970, Brazil.
Instituto de Química, Universidade Federal do Rio Grande do Sul, Porto Alegre, RS 91501-970, Brazil.
Org Lett. 2024 Feb 9;26(5):1034-1039. doi: 10.1021/acs.orglett.3c04169. Epub 2024 Jan 29.
The untapped potential of α-carbonyl sulfoxonium ylides in epoxide ring-opening reactions has been a notable gap in current research, with such reactivity predominantly associated with the highly reactive dimethylsulfoxonium methylide. This study introduces an innovative approach wherein an epoxide indole, formed from 2-hydroxyindoline-3-triethylammonium bromide, undergoes reaction with α-ester sulfoxonium ylides. The outcome is the efficient synthesis of a range of 2-hydroxyindolin-3-ylidenes, demonstrating favorable yields (41-81%) and / ratios from 4:1 to those of exclusive isomers. Additionally, the photophysical properties of the synthesized indolinylidenes are explored, along with their derivatization using various nucleophiles under acid catalysis.
α-羰基硫鎓叶立德在环氧开环反应中未被开发的潜力一直是当前研究中一个显著的空白,这种反应性主要与高活性的二甲基硫鎓甲基化物相关。本研究引入了一种创新方法,其中由2-羟基吲哚啉-3-三乙铵溴化物形成的环氧吲哚与α-酯硫鎓叶立德发生反应。结果是高效合成了一系列2-羟基吲哚啉-3-亚基,产率良好(41-81%),异构体比例从4:1到完全是单一异构体。此外,还探索了合成的吲哚亚基的光物理性质,以及它们在酸催化下使用各种亲核试剂的衍生化反应。