Wang Haibo, Liu Jing, Deng Yi, Min Tianyin, Yu Ganxiang, Wu Xiaojun, Yang Zhen, Lei Aiwen
The College of Chemistry and Molecular Sciences, Wuhan University, Wuhan, Hubei 430072, China.
Chemistry. 2009;15(6):1499-507. doi: 10.1002/chem.200801860.
Pincer thioamide Pd(II) complex 2 was prepared, and its reaction with cyclohexylzinc chloride yielded novel pincer thioimide Pd(II) complex 3 besides Pd(0) species. The structures of complexes 2 and 3 were confirmed by X-ray analysis. Both complexes are efficient catalysts for Negishi couplings involving primary and secondary alkyl zinc reagents bearing beta-hydrogen atoms. At a concentration of 0.1-0.5 mol % both catalysts readily promoted reactions at room temperature or even at 0 degrees C. The operational simplicity of these processes, in conjunction with the easy accessibility of both catalysts and substrates, promises synthetic utility of this new methodology. An experiment on a scale of 19.35 g carried out at very low catalyst loading of 2 (turnover number: 6,100,000) highlighted the potential application of the catalytic system. Monoalkyl and dialkyl zinc reagents displayed different reactivities and selectivities in reactions with aryl iodides catalyzed by complexes 2 or 3, and isomerization in reactions involving acyclic secondary alkyl zinc derivatives was suppressed by using appropriate amounts of dialkyl zinc reagents. Based on preliminary kinetic profiles and reaction evidence, three possible pathways are proposed for the reactions involving acyclic secondary alkyl zinc reagents to rationalize the difference between mono-alkyl and dialkyl zinc derivatives.
制备了钳形硫代酰胺钯(II)配合物2,其与环己基氯化锌反应,除了生成钯(0)物种外,还生成了新型钳形硫代亚胺钯(II)配合物3。配合物2和3的结构通过X射线分析得以确认。这两种配合物都是用于Negishi偶联反应的高效催化剂,该反应涉及带有β-氢原子的伯烷基和仲烷基锌试剂。在0.1 - 0.5 mol%的浓度下,两种催化剂都能在室温甚至0℃下顺利促进反应。这些过程操作简便,且催化剂和底物都易于获得,这预示着这种新方法具有合成实用性。在极低的催化剂负载量2(转换数:6,100,000)下进行的19.35 g规模的实验突出了该催化体系的潜在应用。单烷基和二烷基锌试剂在由配合物2或3催化的与芳基碘的反应中表现出不同的反应活性和选择性,并且通过使用适量的二烷基锌试剂抑制了涉及无环仲烷基锌衍生物的反应中的异构化。基于初步的动力学曲线和反应证据,针对涉及无环仲烷基锌试剂的反应提出了三种可能的途径,以解释单烷基和二烷基锌衍生物之间的差异。