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Direct oxidative dearomatization of indoles: access to structurally diverse 2,2-disubstituted indolin-3-ones.

Xigong LiuXue YanYingde TangCheng-Shi JiangJin-Hai YuKaiming WangJun-Sheng Zhang
Published in: Chemical communications (Cambridge, England) (2019)
Described is an efficient oxidative dearomatization of indoles with TEMPO oxoammonium salt and a broad range of nucleophiles. Under very mild conditions, dearomative oxyalkynylation and oxyalkenylation of indoles to structurally diverse 2,2-disubstituted indolin-3-ones were developed for the first time with high atom-economy. In addition, dearomative oxyarylation, oxyallylation, and oxycyanation of indoles were also demonstrated. Mechanism studies indicated that TEMPO oxoammonium salt served as the sole oxidant source through an electron donor-acceptor (EDA) intermediate.
Keyphrases
  • solar cells
  • molecular dynamics