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Towards an understanding of the vibrational mode specificity for dissociative chemisorption of CH4 on Ni(111): a 15 dimensional study

机译:理解振动模式特异性对CH4在Ni(111)上的解离化学吸附的15维研究

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摘要

We present a fifteen-dimensional (15D) vibrational mode following calculation along the minimum energy path (MEP) of the dissociative chemisorption of CH4 on Ni(111), based on density functional theory (DFT). The MEP has been obtained from the (climbing image) nudged elastic band and steepest descent methods employing a periodic DFT code. The MEP displays a late barrier of 1.09 eV, which is reduced to 0.95 eV after zero-point energy corrections, and a considerable CH bond elongation at the transition state, in accordance with earlier calculations. Our vibrational calculations within the harmonic approximation show a significant involvement of the different vibrational coordinates in reaching the transition state. The couplings between the normal modes have been analyzed along the MEP, various crossing and avoided crossing regions have been identified and discussed in connection with the corresponding Massey velocities and parameters. Based on our analysis we find that pre-exciting the symmetric stretch vibration should be approximately 3 times as efficient in promoting reaction as pre-exciting the asymmetric stretch vibration. The analysis also suggests that the bend vibrations do not couple well to the reaction coordinate, whereas the stretches are efficiently coupled to the reaction coordinate. Both results are in good agreement with experiments.
机译:我们基于密度泛函理论(DFT),沿着CH4在Ni(111)上的解离化学吸附的最小能量路径(MEP)进行计算后,提出了一种15维(15D)振动模式。 MEP是从(爬升图像)微动的弹性带和采用周期性DFT码的最速下降方法获得的。根据先前的计算,MEP显示出1.09 eV的后期势垒,该势垒在零点能量校正后降低至0.95 eV,并且在过渡态时具有相当大的CH键伸长率。我们在谐波近似中的振动计算表明,不同的振动坐标在达到过渡状态时有很大的参与。沿着MEP分析了正常模式之间的耦合,结合相应的Massey速度和参数确定并讨论了各种交叉和避免交叉区域。根据我们的分析,我们发现,预激励对称拉伸振动的效率应约为非激励对称拉伸振动的3倍。分析还表明,弯曲振动不能很好地耦合到反应坐标,而拉伸则可以有效地耦合到反应坐标。两种结果均与实验吻合良好。

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