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首页> 外文期刊>Chemistry: A European journal >Scope and mechanism of the Pd-II-catalyzed arylation/carboalkoxylation of unactivated olefins with indoles
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Scope and mechanism of the Pd-II-catalyzed arylation/carboalkoxylation of unactivated olefins with indoles

机译:Pd-II催化未活化烯烃与吲哚的芳基化/羰基烷氧基化的范围和机理

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摘要

Treatment of 1-methyl-2-(4-pentenyl)indole (5) with a catalytic amount of [PdCl2(MeCN)(2)] (2; 5 mol %) and a stoichiometric amount of CuCl2 (3 equiv) in methanol under CO (1 atm) at room temperature for 30 min gives methyl (9-methyl-2,3,4,9-tetrahydro-4-carbazolyl) acetate (6), which was isolated in 83 % yield. A number of 2- and 3-alkenyl indoles undergo a similar palladium-catalyzed cyclization/carboalkoxylation to give the corresponding polycyclic indole derivatives in moderate to excellent yields with excellent regio- and diastereoselectivity. Under similar conditions, vinyl arenes undergo intermolecular arylation/carboalkoxylation with indoles to give 3-(1-aryl-2-carbomethoxyethyl) indoles in moderate yield with high regioselectivity. Stereochemical analyses of the palladium-catalyzed cyclization/carboalkoxylation of both 2- and 3-alkenyl indoles are in agreement with mechanisms involving outer-sphere attack of the indole on a palladium-olefin complex followed by alpha-migratory insertion of CO and methanolysis of the resulting acyl palladium intermediate. CuCl2 functions as the terminal oxidant in this palladium-catalyzed cyclization/carboalkoxylation of alkenyl indoles and also significantly increases the rate of reaction of 2 with the alkenyl indole to form the corresponding acyl palladium complex. Spectroscopic studies are in agreement with the intermediacy of a heterobimetallic Pd/Cu complex as the active catalyst in this reaction.
机译:用催化量的[PdCl2(MeCN)(2)](2; 5 mol%)和化学计量的CuCl2(3当量)在甲醇中处理1-甲基-2-(4-戊烯基)吲哚(5)于室温(1atm)在室温下放置30分钟,得到乙酸(9-甲基-2,3,4,9-四氢-4-咔唑基)乙酸甲酯(6),其分离率为83%。许多2-和3-烯基吲哚经历相似的钯催化的环化/羰基烷氧基化反应,以中等至优异的产率得到相应的多环吲哚衍生物,具有优异的区域和非对映选择性。在相似的条件下,乙烯基芳烃与吲哚进行分子间芳基化/羰基烷氧基化,以中等收率和高区域选择性得到3-(1-芳基-2-羰甲氧基乙基)吲哚。对2-和3-烯基吲哚的钯催化的环化/羰基烷氧基化的立体化学分析与涉及吲哚在钯-烯烃络合物上的外球攻击,随后CO的α-迁移插入和甲醇的甲醇分解的机理一致生成的酰基钯中间体。在该钯催化的烯基吲哚的环化/羰基烷氧基化反应中,CuCl2用作末端氧化剂,并且还显着提高2与烯基吲哚的反应速率,从而形成相应的酰基钯络合物。光谱学研究与在该反应中作为活性催化剂的杂双金属Pd / Cu配合物的中间体一致。

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