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Understanding Liquid−Solid-Like Behavior of Tetrahydrofuran Adlayers at Room Temperature between Graphene and Mica: A Born−Oppenheimer Molecular Dynamics Study

机译:了解室温下四氢呋喃添加剂在石墨烯和云母之间的液-固行为:Born-Oppenheimer分子动力学研究

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摘要

The phase behavior of adlayers of volatile small organic molecule tetrahydrofuran (THF) at room temperature has been imaged using atomic force microscopy (AFM) through graphene templating (J. Am. Chem. Soc. 2011, 133, 2334−2337). To gain more insight into the dynamical and structural properties of THF adlayers on mica and the effect of graphene templating, the Born−Oppenheimer molecular dynamics simulations (with the BLYP-D functional and a Gaussian plane-wave basis set) are performed. Without the graphene coating, the computed self-diffusion coefficients of THF molecules in the monolayer and bilayer are comparable to that in bulk THF solvent. However, with the graphene coating, the THF monolayer becomes considerably viscous. As the thickness of adlayers increases, the second adlayer of the THF bilayer exhibits even solid-like behavior, consistent with the AFM measurement. Although the motion of THF molecules becomes markedly slower with the graphene coating, the adsorbed THF molecules can still freely tilt and rotate on the mica substrate. Hence, the graphene-coated THF monolayer and bilayer are not strictly as ordered as the monoclinic THF crystal. Nevertheless, with the graphene coating, some THF molecules in the monolayer and bilayer entail certain degrees of crystalline packing as the graphene coating serves as an energy barrier to prevent the volatile THF molecules from evaporation, thereby limiting their motion in both lateral and vertical directions.
机译:挥发性小有机分子四氢呋喃(THF)的吸附层在室温下的相行为已通过原子力显微镜(AFM)通过石墨烯模板成像(J. Am。Chem。Soc。2011,133,2334-2337)。为了进一步了解THF分子在云母上的动力学和结构性质以及石墨烯模板的影响,我们进行了Born-Oppenheimer分子动力学模拟(具有BLYP-D功能和高斯平面波基组)。如果没有石墨烯涂层,则单层和双层中THF分子的计算自扩散系数可与大分子THF溶剂中的相比。但是,利用石墨烯涂层,THF单层变得相当粘。随着附加层厚度的增加,THF双层的第二附加层表现出均匀的类似于固体的行为,与AFM测量一致。尽管利用石墨烯涂层,THF分子的运动明显变慢,但吸附的THF分子仍可以在云母基底上自由倾斜和旋转。因此,石墨烯涂层的THF单层和双层与单斜THF晶体的排列顺序不严格。然而,对于石墨烯涂层,单层和双层中的某些THF分子需要一定程度的晶体堆积,因为石墨烯涂层充当了能量屏障,可防止挥发性THF分子蒸发,从而限制了其在横向和垂直方向上的运动。

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