Rhodium(III)-Catalyzed Arene and Alkene C-H Bond Functionalization Leading to Indoles and Pyrroles

被引:612
作者
Stuart, David R. [1 ]
Alsabeh, Pamela [1 ]
Kuhn, Michelle [1 ]
Fagnou, Keith [1 ]
机构
[1] Univ Ottawa, Dept Chem, Ctr Catalysis Res & Innovat, Ottawa, ON K1N 6N5, Canada
基金
加拿大自然科学与工程研究理事会;
关键词
PALLADIUM-CATALYZED CYCLIZATION; OXIDATIVE COUPLING/CYCLIZATION; REGIOSELECTIVE SYNTHESIS; SUBSTITUTED PYRROLES; DIRECT ANNULATION; INTERNAL ALKYNES; BENZOIC-ACIDS; ACTIVATION; MECHANISM; INHIBITORS;
D O I
10.1021/ja1082624
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
Recently, the rhodium(III)-complex [Cp*RhCl2](2) 1 has provided exciting opportunities for the efficient synthesis of aromatic heterocycles based on a rhodium-catalyzed C H bond functionalization event. In the present report, the use of complexes 1 and its dicationic analogue [Cp*Rh(MeCN)(3)][SbF6](2) 2 have been employed in the formation of indoles via the oxidative annulation of acetanilides with internal alkynes. The optimized reaction conditions allow for molecular oxygen to be used as the terminal oxidant in this process, and the reaction may be carried out under mild temperatures (60 degrees C). These conditions have resulted in an expanded compatibility of the reaction to include a range of new internal alkynes bearing synthetically useful functional groups in moderate to excellent yields. The applicability of the method is exemplified in an efficient synthesis of paullone 3, a tetracyclic indole derivative with established biological activity. A mechanistic investigation of the reaction, employing deuterium labeling experiments and kinetic analysis, has provided insight into issues of reactivity for both coupling partners as well as aided in the development of conditions for improved regioselectivity with respect to meta-substituted acetanilides. This reaction class has also been extended to include the synthesis of pyrroles. Catalyst 2 efficiently couples substituted enamides with internal alkynes at room temperature to form trisubstituted pyrroles in good to excellent yields. The high functional group compatibility of this reaction enables the elaboration of the pyrrole products into a variety of differentially substituted pyrroles.
引用
收藏
页码:18326 / 18339
页数:14
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