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首页> 外文期刊>European journal of inorganic chemistry >Dual Role of Acetate in Copper(II) Acetate Catalyzed Dehydrogenation of Chelating Aromatic Secondary Amines: A Kinetic Case Study of Copper-Catalyzed Oxidation Reactions
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Dual Role of Acetate in Copper(II) Acetate Catalyzed Dehydrogenation of Chelating Aromatic Secondary Amines: A Kinetic Case Study of Copper-Catalyzed Oxidation Reactions

机译:乙酸盐在乙酸铜(II)催化的螯合芳族仲胺脱氢中的双重作用:铜催化氧化反应的动力学案例研究

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摘要

Copper(II) acetate is a frequent empirical choice of the copper source in copper(II)-mediated redox reactions. The effect of the acetate counterion appears crucial but has not been adequately investigated. Herein, we report that copper(II) acetate catalyzes the aerobic dehydrogenation of chelating aromatic secondary amines. The chemoselectivity of acetate and chelating amines in this reaction provides a unique opportunity for a mechanistic study. The progression of this homogeneous reaction is monitored by using electron paramagnetic resonance spectroscopy, UV/Vis absorption spectroscopy, and manometry. The kinetic dependence on the amine substrate, copper(II), and acetate counterion, together with the results of kinetic isotope and substituent effect experiments, suggests that acetate acts both as a bridging ligand of a dinuclear catalytic center for mediating two-electron transfer steps and as a base in the turnover-limiting C-H bond-cleavage step. Upon including 1,8-diazabicyclo[5.4.0]undec-7-ene (DBU) as a surrogate base, DBU and acetate act in a complementary manner to enable a rapid, catalytic dehydrogenation reaction of a chelating secondary amine substrate. Finally, the contrasting reactivities between copper(II) acetate (promoting two-electron transfer) and copper(II) perchlorate (promoting single-electron transfer) underscores how a counterion could completely alter the mechanistic pathway of a copper-mediated oxidation reaction.
机译:乙酸铜(II)是铜(II)介导的氧化还原反应中铜源的常见经验选择。醋酸抗衡离子的作用似乎很关键,但尚未进行充分研究。在此,我们报道乙酸铜(II)催化螯合芳族仲胺的好氧脱氢。该反应中乙酸盐和螯合胺的化学选择性为机理研究提供了独特的机会。通过使用电子顺磁共振光谱法,UV / Vis吸收光谱法和测压法监测这种均相反应的进程。对胺底物,铜(II)和乙酸盐抗衡离子的动力学依赖性,以及动力学同位素和取代基效应实验的结果表明,乙酸盐既充当双核催化中心的桥联配体,用于介导两电子转移步骤并作为限制营业额的CH键裂解步骤的基础。当包含1,8-二氮杂双环[5.4.0]十一碳-7-烯(DBU)作为替代碱时,DBU和乙酸盐以互补的方式起作用,以使螯合仲胺底物能够快速进行催化脱氢反应。最后,乙酸铜(II)(促进两电子转移)和高氯酸铜(II)(促进单电子转移)之间的对比反应性强调了抗衡离子如何完全改变铜介导的氧化反应的机理。

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