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COMPARING AB INITIO COMPUTED ENERGETICS WITH THERMAL EXPERIMENTS IN SURFACE SCIENCE - CO/MGO(001)

机译:从头算计算的能量与表面科学中的热实验比较-CO / MGO(001)

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Early measurements of the binding energy of CO/MgO(001) gave low values, 0.15-0.17 eV, for the regular site, while later experiments using two independent experimental techniques (temperature programmed desorption and Clausius-Clapeyron plots) have given a much higher value, 0.43-0.45 eV. Theory has shown the opposite trend: early calculations gave a value of 0.38 eV, while the latest results are 0.07-0.11 eV. We have performed a careful theoretical analysis of the Clausius-Clapeyron experiment which is found to be in the assumed equilibrium region. Quantum chemical cluster modelling of regular, step, and corner sites show that only a low-coordinated (corner) site can fit both the measured binding energy and vibrational frequency shift. Accurate embedding techniques with full account of the crystal potential and a high-level treatment of dynamical correlation using large basis sets have been used. Effects of relaxation of the step have been investigated using atomistic simulation techniques. The binding energies (corrected for basis set superposition errors) are computed as 0.08, 0.18, and 0.48 eV for regular, step and corner sites, respectively. Theoretical temperature programmed desorption spectra have been generated and show that desorption from regular and step sites should be expected at 40 and 80 K, respectively. At a corner site the molecule is tilted at 45 degrees to the normal. From angle-resolved near-edge extended x-ray absorption fine structure spectroscopy of CO/NiO(100) the molecule has been found to be vertical. Theoretical spectra have been generated including averaging over the frustrated rotations; agreement with the experimental intensity distribution is obtained also for the tilted (at 0 K) geometry. It is suggested that the oxide films contain a high density of defects. (C) 1996 American Institute of Physics. [References: 45]
机译:早期测量的CO / MgO(001)的结合能对于常规位点而言较低,为0.15-0.17 eV,而后来使用两种独立的实验技术(程序升温解吸和克劳修斯-克拉珀龙图)的实验则给出了更高的值值0.43-0.45 eV。理论上显示了相反的趋势:早期的计算得出的值为0.38 eV,而最新的结果为0.07-0.11 eV。我们对Clausius-Clapeyron实验进行了仔细的理论分析,发现该实验位于假定的平衡区域内。规则,阶梯和拐角部位的量子化学簇模型表明,只有低配位(角)部位才能同时满足所测量的结合能和振动频率偏移。已经使用了充分考虑晶体电势的精确嵌入技术以及使用大基集的动态相关性的高级处理。已使用原子模拟技术研究了台阶松弛的影响。对于规则位置,台阶位置和拐角位置,结合能(针对基集叠加误差校正)分别计算为0.08、0.18和0.48 eV。已生成理论温度程序解吸光谱,表明应分别在40 K和80 K下从规则和阶梯位置解吸。在拐角处,分子相对于法线倾斜45度。从角分辨近边缘扩展x射线吸收精细结构光谱的CO / NiO(100),发现该分子是垂直的。已经产生了理论光谱,包括对受挫旋转的平均值;对于倾斜(在0 K时)的几何形状,也获得了与实验强度分布的一致性。建议氧化膜包含高密度的缺陷。 (C)1996年美国物理研究所。 [参考:45]

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