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乙烯基芳烃与烷基胺的分子间马氏氢胺化反应。

Intermolecular, markovnikov hydroamination of vinylarenes with alkylamines.

作者信息

Utsunomiya Masaru, Hartwig John F

机构信息

Department of Chemistry, Yale University, P.O. Box 208107, New Haven, CT 06520-8107, USA.

出版信息

J Am Chem Soc. 2003 Nov 26;125(47):14286-7. doi: 10.1021/ja0375535.

Abstract

A transition metal-catalyzed intermolecular hydroamination of vinylarenes with alkylamines is reported. The combination of Pd(O2CCF3)4, DPPF, and TfOH was the most effective catalyst of those tested. Control experiments without palladium, acid, or ligand all occurred in low yield. The reaction of various vinylarenes with cyclic and acyclic alkylamines in the presence of 5 mol % of this catalyst formed the corresponding arylethylamine products in moderate to high yields. For example, reactions of morpholine, 4-phenylpiperazine, 4-Boc-piperazine, isoindoline, and tetrahydroisoquinoline with styrene all occurred in 58-75% yield. Acyclic amines such as N-benzylmethylamine and n-hexylmethylamine reacted with 2-vinylnaphthalene in 63% and 53% yields, respectively. Mechanistic investigations showed that the reaction occurred through an eta3-arylethyl palladium complex. The reactions of this complex with alkylamines generated product in combination with regenerating free vinylarene, Pd(0), and ammonium salt. Thus, one hurdle to developing hydroamination of vinylarenes with palladium complexes is the faster elimination of free vinylarene from the eta3-arylethyl complex than addition to form the C-N bond. The feasibility of conducting enantioselective hydroaminations with alkylamines was also examined. The product from addition of N-benzylmethylamine to 2-vinylnaphthalene was generated in 63% ee and 36% yield in the presence of Pd(OCOCF3)2, a ferrotane ligand, and TfOH cocatalyst.

摘要

报道了一种过渡金属催化的乙烯基芳烃与烷基胺的分子间氢胺化反应。在测试的催化剂中,Pd(O₂CCF₃)₄、DPPF和TfOH的组合是最有效的催化剂。没有钯、酸或配体的对照实验产率都很低。在5 mol%这种催化剂存在下,各种乙烯基芳烃与环状和非环状烷基胺反应,以中等到高的产率生成相应的芳基乙胺产物。例如,吗啉、4-苯基哌嗪、4-Boc-哌嗪、异吲哚啉和四氢异喹啉与苯乙烯的反应产率均为58 - 75%。N-苄基甲胺和正己基甲胺等非环状胺与2-乙烯基萘反应,产率分别为63%和53%。机理研究表明,该反应通过η³-芳基乙基钯配合物进行。该配合物与烷基胺反应生成产物,同时再生游离的乙烯基芳烃、Pd(0)和铵盐。因此,用钯配合物开发乙烯基芳烃氢胺化反应的一个障碍是,η³-芳基乙基配合物中游离乙烯基芳烃的消除速度比形成C-N键的加成速度快。还研究了用烷基胺进行对映选择性氢胺化反应的可行性。在Pd(OCOCF₃)₂、一种铁罗烷配体和TfOH助催化剂存在下,N-苄基甲胺与2-乙烯基萘加成的产物产率为36%,对映体过量值为63%。

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