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Wetting Transitions of Liquid Gallium Film on Nanopillar-Decorated Graphene Surfaces

机译:纳米柱装饰的石墨烯表面上液态镓膜的润湿转变

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摘要

Molecular dynamics (MD) simulation has been employed to study the wetting transitions of liquid gallium droplet on the graphene surfaces, which are decorated with three types of carbon nanopillars, and to explore the effect of the surface roughness and morphology on the wettability of liquid Ga. The simulation results showed that, at the beginning, the Ga film looks like an upside-down dish on the rough surface, different from that on the smooth graphene surface, and its size is crucial to the final state of liquid. Ga droplets exhibit a Cassie–Baxter (CB) state, a Wenzel state, a Mixed Wetting state, and a dewetting state on the patterned surfaces by changing distribution and the morphology of nanopillars. Top morphology of nanopillars has a direct impact on the wetting transition of liquid Ga. There are three transition states for the two types of carbon nanotube (CNT) substrates and two for the carbon nanocone (CNC) one. Furthermore, we have found that the substrates show high or low adhesion to the Ga droplet with the variation of their roughness and top morphology. With the roughness decreasing, the adhesion energy of the substrate decreases. With the same roughness, the CNC/graphene surface has the lowest adhesion energy, followed by CNT/graphene and capped CNT/graphene surfaces. Our findings provide not only valid support to previous works but also reveal new theories on the wetting model of the metal droplet on the rough substrates.
机译:分子动力学(MD)模拟已被用来研究液体镓液滴在石墨烯表面的润湿转变,石墨烯表面装饰有三种类型的碳纳米柱,并探讨了表面粗糙度和形态对液体Ga润湿性的影响模拟结果表明,从一开始,Ga膜在粗糙表面上看起来像是倒置的盘子,与光滑的石墨烯表面上的盘子不同,并且其大小对于液体的最终状态至关重要。通过改变纳米柱的分布和形态,Ga液滴在图案化的表面上呈现出Cassie-Baxter(CB)状态,Wenzel状态,混合润湿状态和去湿状态。纳米柱的顶部形态直接影响液体Ga的润湿转变。两种类型的碳纳米管(CNT)衬底具有三种过渡态,而碳纳米锥(CNC)则具有两种过渡态。此外,我们已经发现,基板显示出对Ga液滴的高或低粘附性,其粗糙度和顶部形态也有所变化。随着粗糙度的降低,基板的粘合力降低。在相同的粗糙度下,CNC /石墨烯表面具有最低的粘合能,其次是CNT /石墨烯和封端的CNT /石墨烯表面。我们的发现不仅为先前的工作提供了有效的支持,而且还揭示了有关粗糙基底上金属滴润湿模型的新理论。

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