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Catalytic Oxidative Coupling of Primary Amines under Air: A Flexible Route to Benzimidazole Derivatives

机译:空气中伯胺的催化氧化偶联:苯并咪唑衍生物的灵活路线

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摘要

Benzimidazoles are of fundamental importance in chemistry and biology, and the development of efficient, environmentally benign methods for their preparation remains a key challenge for organic chemists. In a biomimetic approach inspired by copper amine oxidases, we disclose herein the scope and factors influencing the success of the cooperative action of CuBr2 as electron-transfer mediator and a topaquinone-like substrate-selective catalyst in the oxidative cyclocondensation of primary amines with o-aminoanilines. This one-pot atom-economic multistep process, which works under green conditions with ambient air as the terminal oxidant, low loadings of catalyst, and equimolar amounts of commercially available amine substrates, is particularly suitable for the preparation of 1,2-disubstituted benzimidazoles. Furthermore, it allows the functionalization of nonactivated primary aliphatic amines, which are known to be challenging substrates for non-enzymatic catalytic aerobic systems.
机译:苯并咪唑在化学和生物学中至关重要,开发高效,环保的制备方法仍然是有机化学家面临的主要挑战。在仿生方法的启发下,我们从铜胺氧化酶的研究中,揭示了影响伯溴与邻苯二酚的氧化环缩合中作为电子传递介质和托帕醌样底物选择性催化剂的协同作用成功的范围和因素。氨基苯胺。这种一锅式原子经济的多步骤方法,在绿色条件下,以环境空气作为末端氧化剂,催化剂的负载量低,等摩尔量的市售胺底物,可以在绿色条件下工作,特别适合于制备1,2-二取代的苯并咪唑。此外,它允许未活化的脂肪族伯胺官能化,已知这是非酶催化需氧体系的具有挑战性的底物。

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