Kazakova Anna N, Iakovenko Roman O, Boyarskaya Irina A, Nenajdenko Valentine G, Vasilyev Aleksander V
Department of Organic Chemistry, Institute of Chemistry, Saint Petersburg State University , Universitetskaya nab., 7/9, Saint Petersburg, 199034, Russia.
Department of Chemistry, Lomonosov Moscow State University , Vorobievy Gory, 1, Moscow, 119899, Russia.
J Org Chem. 2015 Oct 2;80(19):9506-17. doi: 10.1021/acs.joc.5b01398. Epub 2015 Sep 30.
Reaction of 4-aryl-1,1,1-trifluorobut-3-en-2-ols [CF3-allyl alcohols, ArCH═CHCH(OH)CF3] with arenes under activation with anhydrous FeCl3 or FSO3H was studied. We found that the transformation led to trifluoromethylated alkenes [Ar(Ar')CHCH═CHCF3] or 1-trifluoromethylated indanes (CF3-indanes). The formation of these two types of reaction products strongly depends on the nucleophilicity of the starting arene and the electrophilicity of cationic intermediates generated from CF3-allyl alcohols under reaction conditions. Benzene, anisole, veratrole, and ortho-xylene lead exclusively to CF3-alkenes with an E-configuration. More π-donating polymethylated arenes (pseudocumene, mesitylene) afford only CF3-indanes with a predominantly cis-orientation of substituents at positions 1 and 3 of the indane ring. Meta- and para-xylenes show an intermediate behavior; they may form both CF3-alkenes and/or CF3-indanes. The mechanisms of the investigated transformations are discussed.
研究了4-芳基-1,1,1-三氟丁-3-烯-2-醇[CF₃-烯丙醇,ArCH═CHCH(OH)CF₃]在无水FeCl₃或FSO₃H活化下与芳烃的反应。我们发现该转化反应生成了三氟甲基化烯烃[Ar(Ar')CHCH═CHCF₃]或1-三氟甲基茚满(CF₃-茚满)。这两种类型反应产物的形成强烈依赖于起始芳烃的亲核性以及反应条件下由CF₃-烯丙醇生成的阳离子中间体的亲电性。苯、苯甲醚、藜芦醚和邻二甲苯仅生成具有E-构型的CF₃-烯烃。供电子能力更强的多甲基化芳烃(连三甲苯、均三甲苯)仅生成CF₃-茚满,且茚满环1位和3位的取代基主要呈顺式取向。间二甲苯和对二甲苯表现出中间行为;它们可能同时生成CF₃-烯烃和/或CF₃-茚满。讨论了所研究转化反应的机理。