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Capillary wave propagation during the delamination of graphene by the precursor films in electro-elasto-capillarity

机译:电弹性毛细管中前体膜在石墨烯分层过程中的毛细管波传播

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摘要

Molecular dynamics simulations were carried out to explore the capillary wave propagation induced by the competition between one upper precursor film (PF) on the graphene and one lower PF on the substrate in electro-elasto-capillarity (EEC). During the wave propagation, the graphene was gradually delaminated from the substrate by the lower PF. The physics of the capillary wave was explored by the molecular kinetic theory. Besides, the dispersion relation of the wave was obtained theoretically. The theory showed that the wave was controlled by the driving work difference of the two PFs. Simulating the EEC process under different electric field intensities (E), the wave velocity was found insensitive to E. We hope this research could expand our knowledge on the wetting, electrowetting and EEC. As a potential application, the electrowetting of the PF between the graphene and the substrate is a promising candidate for delaminating graphene from substrate.
机译:进行了分子动力学模拟,以探讨电弹性毛细管作用(EEC)中石墨烯上的一个上层前体薄膜(PF)与基底上的一个下层PF之间竞争引起的毛细管波传播。在波传播期间,石墨烯被较低的PF逐渐从基板上分层。通过分子动力学理论探讨了毛细波的物理学。此外,理论上得到了波的色散关系。理论表明,波浪受两个PF的驱动功差的控制。通过模拟不同电场强度(E)下的EEC过程,发现波速对E不敏感。我们希望这项研究能够扩展我们对润湿,电润湿和EEC的认识。作为潜在的应用,石墨烯和衬底之间的PF的电润湿是从衬底上剥离石墨烯的有前途的候选方法。

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