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Mechanistic Features in Al(I)?mediated Oxidative Addition of aryl C?F Bonds: Insights From DFT Calculations

机译:Al(I)介导的芳基C?F键氧化加成的机理特征:DFT计算的见解

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The oxidative addition of a range of robust aryl C?F bonds to a single Al(I) center supported by a (NacNac)? bidentate ligand ((NacNac)? = [ArNC(Me)CHC(Me)NAr]? and Ar = 2,6?Pri2C6H3) have been explored by density functional theory calculations. Our calculations demonstrate that the Al(I) center-mediated C?F insertion generally proceeds via the concerted mechanism that involve both the donation ( ) and back?donation ( ) interactions. In addition, the predicted free energy barriers for the C?F bond activation show good agreement with the experimental information available. Finally, the comparative studies show that B(I) is the most active among group III metals (B, Al, Ga), thus supplying a testable prediction for experiments.
机译:一系列健壮的芳基C 3 F键的氧化加成到由(NacNac)2支撑的单个Al(I)中心上。通过密度泛函理论计算已经探究了二齿配体((NacNac)2 = [ArNC(Me)CHC(Me)NAr] 2和Ar = 2,6′Pri 2 C 6 H 3)。我们的计算表明,Al(I)中心介导的C?F插入通常是通过涉及捐赠()和反向捐赠()相互作用的协调机制进行的。此外,预测的C?F键活化的自由能垒与可用的实验信息显示出良好的一致性。最后,比较研究表明,B(I)是III类金属(B,Al,Ga)中最活跃的,因此为实验提供了可检验的预测。

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