首页> 外文期刊>Journal of physical chemistry letters >Desorption of Benzene, 1,3,5-Trifluorobenzene, and Hexafluorobenzene from a Graphene Surface: The Effect of Lateral Interactions on the Desorption Kinetics
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Desorption of Benzene, 1,3,5-Trifluorobenzene, and Hexafluorobenzene from a Graphene Surface: The Effect of Lateral Interactions on the Desorption Kinetics

机译:从石墨烯表面解吸苯,1,3,5-三氟苯甲苯和六氟苯:横向相互作用对解吸动力学的影响

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The desorption of benzene, 1,3,5-trifluorobenzene (TFB), and hexafluorobenzene (HFB) from a graphene covered Pt(111) substrate was investigated using temperature-programmed desorption (TPD). All three species have well-resolved monolayer and second-layer desorption peaks. The desorption spectra for submonolayer coverages of benzene and HFB are consistent with first-order desorption kinetics. In contrast, the submonolayer TPD spectra for TFB align on a common leading-edge, which is indicative of zero-order desorption kinetics. The desorption behavior of the three molecules can be correlated with the strength of the quadrupole moments. Calculations (second-order M?ller–Plesset perturbation and density functional theory) show that the potential minimum for coplanar TFB dimers is more than a factor of 2 greater than that for either benzene or HFB dimers. The calculations support the interpretation that benzene and HFB are less likely to form the two-dimensional islands that are needed for submonolayer zero-order desorption kinetics.
机译:使用温度编程的解吸(TPD)研究来自石墨烯覆盖的Pt(111)衬底的苯,1,3,5-三氟苯(TFB)和六氟苯(HFB)的解吸。所有三种物种都具有良好分辨的单层和二层解吸峰。苯并二苯并覆盖覆盖的解吸光谱与一阶解吸动力学一致。相反,用于TFB的子提交TPD光谱对齐在公共领导上,该偏角是指示零级解吸动力学。三个分子的解吸行为可以与四极矩的强度相关。计算(二阶M?Ller-Plesset扰动和密度函数理论)表明,共面TFB二聚体的电位最小值大于苯或HFB二聚体的2倍。该计算支持解释,即苯和HFB不太可能形成亚底零阶解散动力学所需的二维岛屿。

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