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Dissociation of CHD3 on Cu(111), Cu(211), and single atom alloys of Cu(111)

机译:Cu(111),Cu(211)和Cu(111)的单个原子合金的CHD3的解离(111)

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摘要

In order to model accurately reactions of polyatomic molecules with metal surfaces important for heterogeneous catalysis in industry, the Specific Reaction Parameter (SRP) approach to density functional theory has been developed. This approach has been shown to describe the dissociation of CHD3 on Ni(111), Pt(111), and Pt(211) with chemical accuracy. In this work, predictions have been made for the reaction of CHD3 on Cu(111) and Cu(211) using barriers, elbow plots, and ab initio molecular dynamics. Future experiments could hopefully prove the transferability of the SRP functional to systems in which methane reacts with flat and stepped surfaces of adjacent groups of the periodic table, by comparison with our predictions. Moreover, the effect of a so-called single atom alloy on the reactivity of methane is investigated by making predictions for CHD3 on Pt-Cu(111) and Pd-Cu(111). It is found that the reactivity is only increased for Pt-Cu(111) near the alloyed atom, which is not only caused by the lowering of the barrier height but also by changes in the dynamical pathway and reduction of energy transfer from methane to the surface. Published by AIP Publishing.
机译:为了模拟具有在工业中异质催化的金属表面的金属表面的多元素分子的反应,已经开发了对密度函数理论的特定反应参数(SRP)方法。已经证明这种方法描述了CHD3对Ni(111),Pt(111)和Pt(211)的解离,以化学精度。在该作品中,已经使用屏障,肘部图和AB初始分子动力学对CHD3对CHD3对Cu(111)和Cu(211)的反应进行预测。未来的实验可以通过与我们的预测相比,甲烷与周期表的相邻组的扁平和阶梯表面反应的系统中的SRP功能的可转移性。此外,通过在Pt-Cu(111)和Pd-Cu(111)上的CHD3的预测来研究所谓的单个原子合金对甲烷反应性的影响。结果发现,合金原子附近的Pt-Cu(111)仅增加反应性,这不仅由阻挡高度降低而且通过动态途径的变化和从甲烷的能量转移的降低引起的表面。通过AIP发布发布。

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