首页> 外文期刊>Chemphyschem: A European journal of chemical physics and physical chemistry >Reassessment of the Mechanisms of Thermal C-H Bond Activation of Methane by Cationic Magnesium Oxides: A Critical Evaluation of the Suitability of Different Density Functionals
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Reassessment of the Mechanisms of Thermal C-H Bond Activation of Methane by Cationic Magnesium Oxides: A Critical Evaluation of the Suitability of Different Density Functionals

机译:重新评估阳离子氧化物甲烷热C-H键活化机制:不同密度函数的适用性的关键评价

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摘要

The mechanisms of the thermal reactions of the two iconic magnesium oxide cations MgO.+ and Mg2O2.+ with methane have been re-evaluated at the CCSD(T)/CBS//CCSD/def2-TZVP level of theory. For the reaction of MgO.+ with CH4, only the classical hydrogen-atom transfer (HAT) was found; in contrast, for the Mg2O2.+/CH4 couple, both HAT and proton-coupled electron-transfer (PCET) exist as mechanistic variants. In order to evaluate the suitability of density functional theory (DFT) methods, the reactions were computed by using 27 density functionals. The results obtained demonstrate that the various DFT methods often deliver rather different results for both geometric and energetic features. As to the prediction of the apparent barriers, pure functionals give the largest mean absolute errors. BMK, omega B97XD, and the double-hybrid functional mPW2PLYP were confirmed to come closest to the results provided by CCSD(T)/CBS. Thus, mechanistic conclusions based on a single DFT method should be viewed with great caution. In summary, this study may assist in the selection of a suitable quantum chemical method to unravel the mechanistic details of C-H bond activation by charged metal oxides.
机译:两种标志性氧化镁阳离子MgO的热反应机制。+和Mg2O2。在CCSD(T)/ CBS // CCSD / Def2-TZVP理论水平上重新评估甲烷。对于MgO的反应。+用CH 4,发现了典型的氢原子转移(帽子);相反,对于Mg2O2。+ / CH4夫妇,帽子和质子耦合电子转移(PCET)都存在作为机械变体。为了评估密度功能理论(DFT)方法的适用性,通过使用27密度函数来计算反应。获得的结果表明,各种DFT方法通常为几何和能量特征提供相当不同的结果。至于对表观障碍的预测,纯功能给出了最大的平均绝对误差。 BMK,OMEGA B97XD和双混合功能MPW2PLYP被确认最接近CCSD(T)/ CBS提供的结果。因此,基于单个DFT方法的机械结论应非常谨慎地观察。总之,该研究可以帮助选择合适的量子化学方法,以通过带电金属氧化物解开C-H键活化的机械细节。

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