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钯(联萘酚膦)催化芳基溴胺化反应的机理研究:合成相关条件下的动力学研究

Mechanistic insights into the Pd(BINAP)-catalyzed amination of aryl bromides: kinetic studies under synthetically relevant conditions.

作者信息

Singh Utpal K, Strieter Eric R, Blackmond Donna G, Buchwald Stephen L

机构信息

Department of Chemistry, Massachusetts Institute of Technology, Cambridge, MA 02139, USA.

出版信息

J Am Chem Soc. 2002 Nov 27;124(47):14104-14. doi: 10.1021/ja026885r.

Abstract

Kinetic studies using reaction calorimetry were carried out under synthetically relevant conditions to study the mechanism of the amination of bromobenzene with primary and secondary amines using Pd(2)(dba)(3)/BINAP mixtures as well as preformed (dba)Pd(BINAP), (p-tolyl)(Br)Pd(BINAP), and Pd(BINAP)(2) complexes. The presence of a significant induction period in the reaction was attributed to the slow activation of the catalytic precursor, resulting in an increase in the concentration of active species within the catalytic cycle. The induction period can mask the true kinetics of the reaction, which exhibits positive order dependences on aryl bromide and amine and zero-order dependence on base. It is also determined that the bis-ligand complex Pd(BINAP)(2) does not play a role directly on the catalytic cycle. In addition to the conventionally accepted pathway involving oxidative addition of the aryl halide to (BINAP)Pd as the first step, a pathway initiated by addition of the amine to the catalyst is proposed and supported by kinetic modeling of sequential reaction experiments. A subtle dependence of the reaction mechanism on the relative concentrations of substrates is revealed in these studies. The dependence of the catalyst resting state on reaction conditions is also discussed. This work suggests that conclusions from kinetic studies may be meaningful only for the conditions under which they are carried out, calling into question the use of conventional kinetic methods in this system.

摘要

在合成相关条件下,利用反应量热法进行动力学研究,以探究使用Pd(2)(dba)(3)/联萘二苯基膦(BINAP)混合物以及预制的(dba)Pd(BINAP)、(对甲苯基)(溴)Pd(BINAP)和Pd(BINAP)₂配合物时,溴苯与伯胺和仲胺胺化反应的机理。反应中存在显著的诱导期,这归因于催化前体的缓慢活化,导致催化循环中活性物种浓度增加。诱导期可能掩盖反应的真实动力学,该反应对芳基溴和胺呈现正级数依赖性,对碱呈现零级数依赖性。还确定双配体配合物Pd(BINAP)₂在催化循环中不直接起作用。除了传统上认为的第一步是芳基卤化物向(BINAP)Pd进行氧化加成的途径外,还提出了由胺向催化剂加成引发的途径,并通过连续反应实验的动力学建模得到支持。这些研究揭示了反应机理对底物相对浓度的微妙依赖性。还讨论了催化剂静止状态对反应条件的依赖性。这项工作表明,动力学研究得出的结论可能仅在其进行的条件下才有意义,这对该体系中传统动力学方法的使用提出了质疑。

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