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Brønsted Acid Mediated Alkenylation and Copper-Catalyzed Aerobic Oxidative Ring Expansion/Intramolecular Electrophilic Substitution of Indoles with Propargyl Alcohols: A Novel One-Pot Approach to Cyclopenta[c]quinolines

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Figshare2016-02-16 更新2026-04-29 收录
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https://figshare.com/articles/dataset/Br_nsted_Acid_Mediated_Alkenylation_and_Copper_Catalyzed_Aerobic_Oxidative_Ring_Expansion_Intramolecular_Electrophilic_Substitution_of_Indoles_with_Propargyl_Alcohols_A_Novel_One_Pot_Approach_to_Cyclopenta_i_c_i_quinolines/2228278
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Copper-catalyzed oxidative ring-expansion/intramolecular electrophilic substitution of 3-dienylindoles leading to cyclo­penta­[c]­quinolines and 3-indenyl­indoles under aerobic conditions is described. The precursors, 3-dienylindoles, are formed via Friedel–Crafts alkenylation followed by isomerization reactions of 2-substituted indoles with tertiary propargyl alcohols under Brønsted acid mediation. The methyl (sp3-C) group present in the propargyl alcohol becomes a part of a six-membered ring in the final ring-expansion products, the cyclo­penta­[c]­quinolines which are fluorescence active. Based on these observations, a novel one-pot strategy for ring expansion from indole to cyclo­penta­[c]­quinoline is discovered.
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2016-02-16
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