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Methane dissociation on the steps and terraces of Pt(211) resolved by quantum state and impact site

机译:甲烷解离对Pt(211)的步骤和梯田(211)由量子州和撞击部位解决

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摘要

Methane dissociation on the step and terrace sites of a Pt(211) single crystal was studied by reflection absorption infrared spectroscopy (RAIRS) at a surface temperature of 120 K. The C-H stretch RAIRS signal of the chemisorbed methyl product species was used to distinguish between adsorption on step and terrace sites allowing methyl uptake to be monitored as a function of incident kinetic energy for both sites. Our results indicate a direct dissociation mechanism on both sites with higher reactivity on steps than on terraces consistent with a difference in an activation barrier height of at least 30 kJ/mol. State-specific preparation of incident CH4 with one quantum of antisymmetric (nu(3)) stretch vibration further increases the CH4 reactivity enabling comparison between translational and vibrational activation on both steps and terraces. The reaction is modeled with first principles quantum theory that accurately describes dissociative chemisorption at different sites on the surface. Published by AIP Publishing.
机译:通过120K的表面温度的反射吸收红外光谱(距离)研究了Pt(211)单晶的步骤和露天地点的甲烷解离。使用化学吸附甲基产品物种的CH拉伸距离信号来区分对步骤和露台遗址的吸附,允许监测甲基摄取作为两位地点的事件动能的函数。我们的结果表明,两个站点的直接解离机制在步骤的步骤中的反应性较高,比在露天露台上一致的露天度均为至少30kJ / mol的差异。具有一种量子的异常反对子(Nu(3))拉伸振动的状态特异性施拉振动进一步增加了CH4反应性,从而在两个步骤和露台上的平移和振动激活之间的比较。该反应用第一个原理的量子理论进行了建模,可以准确地描述在表面上不同部位的解离化学吸附。通过AIP发布发布。

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