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Room temperature catalytic carbon–hydrogen bond alumination of unactivated arenes: mechanism and selectivity

机译:室温催化碳 - 氢键对未激活的阶段:机制和选择性

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We report the first catalytic methods for the transformation of C–H bonds of unactivated arenes into C–Al bonds. The catalytic reactions occur at 25 °C (benzene, toluene and xylenes) with palladium loadings as low as 0.1 mol%. Remarkably, the C–H activation of toluene and xylenes proceeds with ortho - and meta -selectivity. This selectivity is highly unusual and complementary to both Friedel–Crafts and the majority of C–H borylation methods. Through a detailed mechanistic analysis (Eyring analysis, KIE, DFT, QTAIM) we show that unusual Pd–Al intermetallic complexes are on the catalytic cycle and that the selectivity is determined by weak attractive dispersion forces in the transition state for C–H bond breaking.
机译:我们报道了第一催化方法,用于将未粘贴的植物的C-H键转化为C-Al键。催化反应在25℃(苯,甲苯和二甲苯)以低至0.1mol%的钯载荷。值得注意的是,甲苯和二甲苯的C-H活化与邻邻和荟萃 - 选择性。这种选择性是非常不寻常的,与Friedel-Crafts和大多数C-H辅助方法互补。通过详细的机制分析(ePING,DFT,Qtaim),显示出不寻常的PD-Al金属间复合物在催化周期上,并且通过在C-H键断裂中的过渡状态下的弱吸引力分散力来确定选择性。

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