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Decarboxylative Palladium(II)-Catalyzed Synthesis of Aryl Amidines from Aryl Carboxylic Acids: Development and Mechanistic Investigation

机译:脱羧钯(II)催化从芳基羧酸合成芳Am的研究和机理研究

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摘要

A fast and convenient synthesis of aryl amidines starting from carboxylic acids and cyanamides is reported. The reaction was achieved by palladium(II)-catalysis in a one-step microwave protocol using [Pd(O2CCF3)2], 6-methyl-2,2′-bipyridyl and trifluoroacetic acid (TFA) in N-methylpyrrolidinone (NMP), providing the corresponding aryl amidines in moderate to excellent yields. The protocol is very robust with regards to the cyanamide coupling partner but requires electron-rich ortho-substituted aryl carboxylic acids. Mechanistic insight was provided by a DFT investigation and direct ESI-MS studies of the reaction. The results of the DFT study correlated well with the experimental findings and, together with the ESI-MS study, support the suggested mechanism. Furthermore, a scale-out (scale-up) was performed with a non-resonant microwave continuous-flow system, achieving a maximum throughput of 11 mmol h−1 by using a glass reactor with an inner diameter of 3 mm at a flow rate of 1 mL min−1.
机译:据报道,从羧酸和氰胺开始快速方便地合成芳基idine。该反应是通过在[-Pd(O2CCF3)2],6-甲基-2,2'-联吡啶和三氟乙酸(TFA)在N-甲基吡咯烷酮(NMP)中的一步微波操作中通过钯(II)催化实现的,以中等至优异的产率提供相应的芳基am。该方案对于氰酰胺偶合剂非常稳定,但需要富电子的邻位取代的芳基羧酸。通过DFT调查和对反应的直接ESI-MS研究提供了机械学见解。 DFT研究的结果与实验结果紧密相关,并且与ESI-MS研究一起支持了所建议的机理。此外,利用非共振微波连续流系统进行了放大(放大),通过使用具有内径的玻璃反应器实现了最大通量为11 mmol h -1 以1 mL min -1 的流速注入3 mm。

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