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首页> 外文期刊>Beilstein journal of organic chemistry. >Cationic Pd(II)-catalyzed C–H activation/cross-coupling reactions at room temperature: synthetic and mechanistic studies
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Cationic Pd(II)-catalyzed C–H activation/cross-coupling reactions at room temperature: synthetic and mechanistic studies

机译:室温下阳离子Pd(II)催化的C–H活化/交叉偶联反应:合成和机理研究

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Cationic palladium(II) complexes have been found to be highly reactive towards aromatic C–H activation of arylureas at room temperature. A commercially available catalyst [Pd(MeCN)4](BF4)2 or a nitrile-free cationic palladium(II) complex generated in situ from the reaction of Pd(OAc)2 and HBF4, effectively catalyzes C–H activation/cross-coupling reactions between aryl iodides, arylboronic acids and acrylates under milder conditions than those previously reported. The nature of the directing group was found to be critical for achieving room temperature conditions, with the urea moiety the most effective in promoting facile coupling reactions at an ortho C–H position. This methodology has been utilized in a streamlined and efficient synthesis of boscalid, an agent produced on the kiloton scale annually and used to control a range of plant pathogens in broadacre and horticultural crops. Mechanistic investigations led to a proposed catalytic cycle involving three steps: (1) C–H activation to generate a cationic palladacycle; (2) reaction of the cationic palladacycle with an aryl iodide, arylboronic acid or acrylate, and (3) regeneration of the active cationic palladium catalyst. The reaction between a cationic palladium(II) complex and arylurea allowed the formation and isolation of the corresponding palladacycle intermediate, characterized by X-ray analysis. Roles of various additives in the stepwise process have also been studied.
机译:阳离子钯(II)配合物在室温下对芳基脲的芳族CH活化具有很高的反应活性。市售催化剂[Pd(MeCN) 4 ](BF 4 2 或生成的无腈阳离子钯(II)络合物Pd(OAc) 2 和HBF 4 的原位反应,在较温和的条件下有效催化芳基碘,芳基硼酸和丙烯酸酯之间的C–H活化/交叉偶联反应比以前报道的要多发现导向基团的性质对于达到室温条件至关重要,其中尿素部分最有效地促进邻位C–H位置的偶联反应。该方法已用于Boscalid的简化和高效合成中,Boscalid是一种每年以千吨规模生产的药剂,用于控制阔亩和园艺作物中的一系列植物病原体。机理研究导致了拟议的催化循环,涉及三个步骤:(1)C–H活化以生成阳离子帕拉达环; (2)使阳离子型四环硼烷与芳基碘化物,芳基硼酸或丙烯酸酯反应,以及(3)使活性阳离子型钯催化剂再生。阳离子钯(II)配合物与芳基脲之间的反应允许形成和分离相应的palladacycle中间体,其特征在于X射线分析。还研究了各种添加剂在逐步过程中的作用。

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