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Probing the potential of metalla-N-heterocyclic carbenes towards activation of enthalpically strong bonds

机译:探测金属对致焓强键的激活的潜力

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摘要

Density functional theory calculations are employed to explore the reactivity of metalla-N-heterocyclic carbenes (MNHCs) towards activation of a variety of small molecules (H-2, NH3, PH3, SiH3Ph and CH4). All the MNHCs considered are found to have a stable singlet ground state and possess suitable electronic properties for their application in small molecule activation. The calculated energy barriers of E-H (E = H, C, N, Si, P) activation for the MNHCs are found to be in agreement with those of the experimentally evaluated cyclic alkyl(amino)carbene (CAAC) and diamidocarbenes (DACs), thereby indicating the activating effect of the incorporation of an ancillary metal center within a cyclic NHC, and highlighting a new, underexplored strategy in achieving difficult bond activations with carbenes.
机译:使用密度函数理论计算来探讨金属-N-杂环碳碳(MNHC)对各种小分子激活的反应性(H-2,NH 3,PH3,SiH3ph和CH 4)。 发现所有MNHC被认为具有稳定的单线态接地状态,并且具有适当的电子性质,用于其在小分子活化中的应用。 eH(E = H,C,N,Si,P)激活的计算能量屏障被发现与实验评估的环状烷基(氨基)卡宾(CAAC)和二酰胺肽(DACS)一致地吻合, 因此,表明在循环NHC内掺入辅助金属中心的激活效果,并突出新的未缺乏缺乏策略在实现困难的粘合激活与碳酸盐。

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