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首页> 外文期刊>Journal of the American Chemical Society >DFT studies on the mechanism of allylative dearomatization catalyzed by palladium
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DFT studies on the mechanism of allylative dearomatization catalyzed by palladium

机译:DFT研究钯催化的烯丙基脱芳香化反应机理

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The reaction mechanism of the Pd-catalyzed benzyl/allyl coupling of benzyl chloride with allyltributylstannan, resulting in the dearomatization of the benzyl group, was studied using density functional theory calculations at the B3LYP level. The calculations indicate that the intermediate (eta(3)-benzyl)(eta(1)-allyl)-Pd(PH3) is responsible for the formation of the kinetically favored dearomatic product. Reductive elimination of the dearomatic product from the intermediate occurs by coupling the C-3 terminus of the eta(1)-allyl ligand and the para-carbon of the eta(3)-benzyl ligand in (eta(3)-benzyl)(eta(1)-allyl) Pd(PH3). For comparison, various C-C coupling reaction pathways have also been examined.
机译:使用密度泛函理论计算在B3LYP水平上研究了Pd催化苄基氯与烯丙基三丁基stannan的苄基/烯丙基偶联的反应机理,导致苄基脱芳香化。计算表明,中间体(eta(3)-苄基)(eta(1)-烯丙基)-Pd(PH3)负责形成动力学上有利的脱芳族产物。通过偶联eta(1)-烯丙基配体的C-3末端和eta(3)-苄基配体中的eta(3)-苄基配体的对位碳,从中间体中还原脱除芳族产物eta(1)-烯丙基)Pd(PH3)。为了比较,还检查了各种C-C偶联反应途径。

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