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钯/咪唑盐体系介导的芳基卤化物与含氮试剂的胺化反应。

Amination reactions of aryl halides with nitrogen-containing reagents mediated by palladium/imidazolium salt systems.

作者信息

Grasa G A, Viciu M S, Huang J, Nolan S P

机构信息

Department of Chemistry, University of New Orleans, New Orleans, Louisiana 70148, USA.

出版信息

J Org Chem. 2001 Nov 16;66(23):7729-37. doi: 10.1021/jo010613+.

Abstract

Nucleophilic N-heterocyclic carbenes have been conveniently used as catalyst modifiers in amination reactions involving aryl chlorides, aryl bromides, and aryl iodides with various nitrogen-containing substrates. The scope of a coupling process using a Pd(0) or Pd(II) source and an imidazolium salt in the presence of a base, KO(t)Bu or NaOH, was tested using various substrates. The Pd(2)(dba)(3)/IPr.HCl (1, IPr = 1,3-bis(2,6-diisopropylphenyl)imidazol-2-ylidene) system presents the highest activity with respect to electron-neutral and electron-rich aryl chlorides. The ligand is also effective for the synthesis of benzophenone imines, which can be easily converted to the corresponding primary amines by acid hydrolysis. Less reactive indoles were converted to N-aryl-substituted indoles using as supporting ligand the more donating SIPr.HCl (5, SIPr = 1,3-bis(2,6-diisopropylphenyl)-4,5-dihydroimidazol-2-ylidene). The Pd(OAc)(2)/SIPr.HCl/NaOH system is efficient for the N-arylation of diverse indoles with aryl bromides. The general protocol developed has been applied successfully to the synthesis of a key intermediate in the synthesis of an important new antibiotic. Mechanistically, palladium-to-ligand ratio studies strongly support an active species bearing one nucleophilic carbene ligand.

摘要

亲核性N-杂环卡宾已被方便地用作涉及芳基氯、芳基溴和芳基碘与各种含氮底物的胺化反应中的催化剂改性剂。在碱KO(t)Bu或NaOH存在下,使用Pd(0)或Pd(II)源和咪唑盐的偶联过程的范围,已用各种底物进行了测试。对于电子中性和富电子的芳基氯,Pd(2)(dba)(3)/IPr.HCl(1,IPr = 1,3-双(2,6-二异丙基苯基)咪唑-2-亚基)体系表现出最高的活性。该配体对于二苯甲酮亚胺的合成也有效,二苯甲酮亚胺可通过酸水解轻松转化为相应的伯胺。使用给电子性更强的SIPr.HCl(5,SIPr = 1,3-双(2,6-二异丙基苯基)-4,5-二氢咪唑-2-亚基)作为支持配体,将反应活性较低的吲哚转化为N-芳基取代的吲哚。Pd(OAc)(2)/SIPr.HCl/NaOH体系对于各种吲哚与芳基溴的N-芳基化反应是有效的。所开发的通用方案已成功应用于一种重要新型抗生素合成中的关键中间体的合成。从机理上讲,钯与配体比例的研究有力地支持了带有一个亲核卡宾配体的活性物种。

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