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Intramolecular Pd(0)-catalyzed reactions of (2-iodoanilino)-aldehydes: A joint experimental-computational study

机译:分子内Pd(0)催化的(2-碘苯胺基)-醛反应:联合实验计算研究

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摘要

An extensive joint experimental-computational density functional theory (DFT) study has been carried out to gain insight into the factors that control the chemoselectivity (i.e., acylation vs α-arylation reaction) of palladium-catalyzed cyclizations of (2-iodoanilino)-aldehydes. To this end, the nature of the tethers joining the aniline nitrogen and the aldehyde moiety, different palladium precatalysts and reaction conditions (base and temperature), as well as different additives (mono- and bidendate ligands) has been explored. The adequate selection of these variables allows for the control of the selectivity of the process. Thus, (2-iodoanilino)-aldehydes generally lead to the formation of nucleophilic addition derived products when Cs _2CO_3/Et_3N is used as base. In contrast, the use of stronger bases like K~tOBu (in the presence of PhOH) mainly forms α-arylation reaction products. The different reaction pathways leading to the experimentally observed reaction products have been studied by means of computational tools.
机译:已经进行了广泛的联合实验-计算密度泛函理论(DFT)研究,以深入了解控制钯催化的(2-碘代苯胺基)-醛环化反应的化学选择性(即酰化与α-芳基化反应)的因素。 。为此,已经研究了连接苯胺氮和醛部分的系链的性质,不同的钯预催化剂和反应条件(碱和温度)以及不同的添加剂(单和双齿配体)。这些变量的适当选择允许控制过程的选择性。因此,当将Cs_2CO_3 / Et_3N用作碱时,(2-碘苯胺基)-醛通常导致亲核加成衍生产物的形成。相反,使用强碱如K〜tOBu(在PhOH存在下)主要形成α-芳基化反应产物。已经通过计算工具研究了导致实验观察到的反应产物的不同反应途径。

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