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首页> 外文期刊>The Journal of Chemical Physics >A THEORETICAL STUDY OF CH4 DISSOCIATION ON PURE AND GOLD-ALLOYED NI(111) SURFACES
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A THEORETICAL STUDY OF CH4 DISSOCIATION ON PURE AND GOLD-ALLOYED NI(111) SURFACES

机译:纯和金合金Ni(111)表面CH4分解的理论研究

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We present a density functional theory study of the first step of CH4 adsorption on the Ni(111) surface, dissociation into adsorbed CH3 and H. The rupture of the C-H bond occurs preferentially on top of a Ni atom, with a dissociation barrier of about 100 kJ/mol (including zero point corrections). The transition state involves considerable internal excitation of the molecule. The active C-H bond is both stretched to 1.6 Angstrom and tilted relative to the methyl group. A normal mode analysis shows that the reaction coordinate is mainly a C-H stretch, while the orientation of the C-H bond relative to the surface is responsible for the highest real mode. Alloying the surface with gold also affects the reactivity of the Ni atoms on adjacent surface sites. The dissociation barrier is increased by 16 and 38 kJ/mol for a Ni atom with one or two gold neighbors, respectively. We attribute these changes to a shift in the local density of d states at the nickel atoms in the neighborhood of gold. (C) 1996 American Institute of Physics. [References: 46]
机译:我们提出了CH4吸附在Ni(111)表面的第一步,解离为吸附的CH3和H的第一步的密度泛函理论研究。CH键的断裂优先发生在Ni原子的顶部,解离势垒约为100 kJ / mol(包括零点校正)。过渡态涉及分子的相当大的内部激发。活性C-H键均被拉伸至1.6埃且相对于甲基倾斜。正态模式分析表明,反应坐标主要是C-H拉伸,而C-H键相对于表面的方向是最高的实模式。用金合金化表面还会影响相邻表面位点上的镍原子的反应性。对于具有一个或两个金相邻原子的Ni原子,解离势垒分别增加16 kk / mol和38 kJ / mol。我们将这些变化归因于金附近镍原子上d状态局部密度的变化。 (C)1996年美国物理研究所。 [参考:46]

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