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Tuning the Selectivity of Palladium Catalysts for Hydroformylation and Semihydrogenation of Alkynes: Experimental and Mechanistic Studies

机译:调整钯催化剂对炔芳甲酰化和半萘化的选择性:实验和机械研究

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摘要

Here, we describe a selective palladium catalyst system for chemodivergent functionalization of alkynes with syngas. In the presence of an advanced ligand L2 bearing 2-pyridyl substituent as a built-in base, either hydroformylation or semihydrogenation of diverse alkynes occurs with high chemo- and stereoselectivity under comparable conditions. Mechanistic studies, including density functional theory (DFT) calculations, kinetic analysis, and control experiments, revealed that the strength and concentration of acidic cocatalysts play a decisive role in controlling the chemoselectivity. DFT studies disclosed that ligand L2 not only promotes heterolytic activation of hydrogen similar to frustrated Lewis pair (FLP) systems in the hydrogenolysis step for hydroformylation but also suppresses CO coordination to promote semihydrogenation under strong acid conditions. This switchable selectivity provides a strategy to design new catalysts for desired products.
机译:在这里,我们描述了一种选择性钯催化剂催化剂系统,用于alkynes与合成气的化学发作化。 在轴承2-吡啶基取代基作为内置碱的情况下,在可比条件下具有高化学和立体选择性的多种炔烃的加氢甲酰化或半氢化。 机械研究,包括密度泛函理论(DFT)计算,动力学分析和对照实验,揭示了酸性助催化剂的强度和浓度在控制化学选择性方面发挥着决定性作用。 DFT研究公开了配体 L2不仅促进了与加氢甲酰化的氢解步的氢化物的Lewis对(FLP)系统相似的氢气异化活化,而且还抑制了CO协调,以在强酸条件下促进半氢化。 这种可切换选择性提供了为所需产品设计新催化剂的策略。

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