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首页> 外文期刊>The Journal of Chemical Physics >CHD3 dissociation on Pt(111): A comparison of the reaction dynamics based on the PBE functional and on a specific reaction parameter functional
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CHD3 dissociation on Pt(111): A comparison of the reaction dynamics based on the PBE functional and on a specific reaction parameter functional

机译:Pt(111)上的CHD3解离:基于PBE功能和特定反应参数功能的反应动力学的比较

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摘要

We present a comparison of ab initio molecular dynamics calculations for CHD3 dissociation on Pt(111) using the Perdew, Burke and Ernzerhof (PBE) functional and a specific reaction parameter (SRP) functional. Despite the two functionals predicting approximately the same activation barrier for the reaction, the calculations using the PBE functional consistently overestimate the experimentally determined dissociation probability, whereas the SRP functional reproduces the experimental values within a chemical accuracy (4.2 kJ/mol). We present evidence that suggests that this difference in reactivity can at least in part be attributed to the presence of a van derWaals well in the potential of the SRP functional which is absent from the PBE description. This leads to the CHD3 molecules being accelerated and spending less time near the surface for the trajectories run with the SRP functional, as well as more energy being transferred to the surface atoms. We suggest that both these factors reduce the reactivity observed in the SRP calculations compared to the PBE calculations. Published by AIP Publishing.
机译:我们使用PTOWOW,Burke和Ernzerhof(PBE)功能和特定的反应参数(SRP)功能,表现了AB Initio分子动力学计算对Pt(111)对Pt(111)的CHD3解离的比较。尽管两种功能预测了对反应的大致相同的激活屏障,但是使用PBE功能的计算一致地高估实验确定的解离概率,而SRP功能在化学精度(4.2kJ / mol)内再现实验值。我们提出的证据表明,反应性的这种差异至少部分可以归因于VAN derwaals的存在良好,其在PBE描述中不存在的SRP功能。这导致CHD3分子加速并在用SRP功能运行的轨迹的表面附近花费较少的时间,以及更多的能量转移到表面原子。我们认为,与PBE计算相比,这两个因素都会降低SRP计算中观察到的反应性。通过AIP发布发布。

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