首页> 外文期刊>The Journal of Organic Chemistry >Mechanistic studies of wacker-type intramolecular aerobic oxidative amination of alkenes catalyzed by Pd(OAc)2/pyridine
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Mechanistic studies of wacker-type intramolecular aerobic oxidative amination of alkenes catalyzed by Pd(OAc)2/pyridine

机译:Pd(OAc)2 /吡啶催化瓦克型分子内需氧氧化胺化反应的机理研究

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Wacker-type oxidative cyclization reactions have been the subject of extensive research for several decades, but few systematic mechanistic studies of these reactions have been reported. The present study features experimental and DFT computational studies of Pd(OAc)_2/pyridine-catalyzed intramolecular aerobic oxidative amination of alkenes. The data support a stepwise catalytic mechanism that consists of (1) steady-state formation of a PdII-amidate-alkene chelate with release of 1 equiv of pyridine and AcOH from the catalyst center, (2) alkene insertion into a Pd-N bond, (3) reversible β-hydride elimination, (4) irreversible reductive elimination of AcOH, and (5) aerobic oxidation of palladium(0) to regenerate the active trans-Pd(OAc)_2(py)_2 catalyst. Evidence is obtained for two energetically viable pathways for the key C-N bond-forming step, featuring a pyridine-ligated and a pyridine-dissociated Pd~(II) species. Analysis of natural charges and bond lengths of the alkene-insertion transition state suggest that this reaction is best described as an intramolecular nucleophilic attack of the amidate ligand on the coordinated alkene.
机译:几十年来,瓦克型氧化环化反应一直是广泛研究的主题,但是很少有关于这些反应的系统机理研究的报道。本研究的特点是Pd(OAc)_2 /吡啶催化的烯烃分子内需氧氧化胺化的实验和DFT计算研究。数据支持逐步催化机理,该机理包括(1)稳态形成PdII-氨基酸酯-烯烃螯合物,并从催化剂中心释放1当量的吡啶和AcOH,(2)烯烃插入Pd-N键中,(3)可逆的β-氢化物消除,(4)不可逆的还原性消除AcOH和(5)有氧氧化钯(0)以再生活性反式Pd(OAc)_2(py)_2催化剂。对于关键的C-N键形成步骤,有两个能量上可行的途径得到了证据,其特征是吡啶连接的和吡啶离解的Pd〜(II)物种。烯烃插入过渡态的自然电荷和键长的分析表明,该反应最好描述为酰胺化配体对配位烯烃的分子内亲核攻击。

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