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三氟甲基化芳基和杂芳基卤化物与氟仿衍生的 CuCF3:范围、限制和机理特征。

Trifluoromethylation of aryl and heteroaryl halides with fluoroform-derived CuCF3: scope, limitations, and mechanistic features.

机构信息

Institute of Chemical Research of Catalonia (ICIQ), Tarragona 43007, Spain.

出版信息

J Org Chem. 2013 Nov 15;78(22):11126-46. doi: 10.1021/jo401423h. Epub 2013 Aug 21.

DOI:10.1021/jo401423h
PMID:23964731
Abstract

Fluoroform-derived CuCF3 recently discovered in our group exhibits remarkably high reactivity toward aryl and heteroaryl halides, performing best in the absence of extra ligands. A broad variety of iodoarenes undergo smooth trifluoromethylation with the "ligandless" CuCF3 at 23-50 °C to give the corresponding benzotrifluorides in nearly quantitative yield. A number of much less reactive aromatic bromides also have been trifluoromethylated, including pyridine, pyrimidine, pyrazine, and thiazole derivatives as well as aryl bromides bearing electron-withdrawing groups and/or ortho substituents. Only the most electrophilic chloroarenes can be trifluoromethylated, e.g., 2-chloronicotinic acid. Exceptionally high chemoselectivity of the reactions (no side-formation of arenes, biaryls, and C2F5 derivatives) has allowed for the isolation of a large number of trifluoromethylated products in high yield on a gram scale (up to 20 mmol). The CuCF3 reagent is destabilized by CuX coproduced in the reaction, the magnitude of the effect paralleling the Lewis acidity of CuX: CuCl > CuBr > CuI. While S(N)Ar and S(RN)1 mechanisms are not operational, there is a well-pronounced ortho effect, i.e., the enhanced reactivity of ortho-substituted aryl halides 2-RC6H4X toward CuCF3. Intriguingly, this ortho-effect is observed for R = NO2, COOH, CHO, COOEt, COCH3, OCH3, and even CH3, but not for R = CN. The fluoroform-derived CuCF3 reagent and its reactions with haloarenes provide an unmatched combination of reactivity, selectivity, and low cost.

摘要

我们小组最近发现的三氟甲基化铜(CuCF3)衍生自氟仿,对芳基和杂芳基卤化物表现出极高的反应活性,在没有额外配体的情况下效果最佳。各种碘代芳烃在 23-50°C 下与“无配体”的 CuCF3 进行平稳的三氟甲基化反应,以近乎定量的产率得到相应的苯并三氟化物。许多反应活性较低的芳基溴化物也被三氟甲基化,包括吡啶、嘧啶、吡嗪和噻唑衍生物以及带有吸电子基团和/或邻位取代基的芳基溴化物。只有最具亲电性的氯代芳烃才能被三氟甲基化,例如 2-氯烟酸。反应具有极高的化学选择性(不会生成芳烃、联芳烃和 C2F5 衍生物),因此可以在克级规模(高达 20mmol)下以高产率分离出大量三氟甲基化产物。CuCF3 试剂会被反应中生成的 CuX 破坏,其影响的大小与 CuX 的路易斯酸度平行:CuCl > CuBr > CuI。虽然 S(N)Ar 和 S(RN)1 反应机制不适用,但存在明显的邻位效应,即邻位取代的芳基卤化物 2-RC6H4X 对 CuCF3 的反应性增强。有趣的是,这种邻位效应存在于 R = NO2、COOH、CHO、COOEt、COCH3、OCH3,甚至 CH3 中,但不存在于 R = CN 中。三氟甲基化铜(CuCF3)衍生自氟仿,其与卤代芳烃的反应具有无与伦比的反应活性、选择性和低成本的组合。

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