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Interfacial adhesion properties of graphene sheet on nanoscale corrugated surface: a molecular dynamics simulation study

机译:石墨烯片在纳米波纹表面上的界面粘附性能:分子动力学模拟研究

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Adhesive contacts between graphene sheet (GS) and corrugated substrates made of an ordered array of atomic pillars with variable geometries were investigated by molecular dynamics simulations. Depending on the height and interval distance of the pillars, GS can conformably coat the surface, partially adhere, or remain flat on top of the pillars. The relationship between the geometries of the pillar and the final adhesion configurations of GS was partially established. A critical adsorption energy was determined to achieve stable adsorption configuration of GS on corrugated substrates made of ordered pillar arrays. Besides the geometries of pillars, the effects of initial coating angle of GS were also considered as an important factor that affects the final adsorption configuration. We observed two interesting morphologies of GS, I shape' and L shape', which were determined by the initial coating angles.
机译:通过分子动力学模拟研究了石墨烯片(GS)和由具有可变几何形状的有序原子柱阵列构成的瓦楞基材之间的粘合接触。根据支柱的高度和间隔距离,GS可以均匀地覆盖表面,部分附着或保持平坦。支柱的几何形状和GS的最终附着力之间的关系已部分建立。确定了临界吸附能,以使GS在由有序柱阵列制成的瓦楞基材上实现稳定的吸附构型。除了支柱的几何形状外,GS初始涂层角度的影响也被认为是影响最终吸附构型的重要因素。我们观察到了GS的两个有趣的形态,即“ I形”和“ L形”,这是由初始涂层角度确定的。

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