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Ultrafast spontaneous driving of water droplets on monolayer graphene- covered gradient nanopillared surfaces

机译:超快自发驱动水滴在单层石墨烯覆盖的梯度纳米柱表面

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摘要

Spontaneous driving of liquid droplets on textured substrate is of great importance in understanding some biological processes and designing numerous functional surfaces. However, the pinning force usually reduces the velocity and moving stability of liquid droplets in self-driving process. In this paper, a novel design of nanopillared surface with a gradient density of structural pillar matrix covered by a monolayer graphene is proposed to realize ultrafast self-driving of water droplets. Classical molecular dynamics results provide a deep insight into the enhanced spontaneous driving behaviors, and reveal the underlying mechanism of the decrease in pinning force by a monolayer graphene. The droplet can move spontaneously at a ultrahigh speed of 75.7 m/s (272.52 km/h) from sparsest to densest regions of pillars while a wettability gradient is created by the gradient distribution density of pillar matrix relying on the wetting transparency of monolayer graphene. In particular, the gradient short pillared texture triggers an opposite self-driving regularity in which the water droplet moves from densest to sparsest regions of pillars, intrinsically because the gradient short-pillared surface leads to a wetting transition from hydrophobic to hydrophilic since the monolayer graphene can be adsorbed into the sparsest short-pillared texture. Furthermore, the influence mechanism of the pillar shape and pillar matrix on the self-driving behaviors of the water nanodroplet is clarified. The findings will theoretically direct the design of graphene-covered functional surfaces for spontaneous driving of liquid droplets.
机译:自发驱动液滴在带纹理的基材上对于理解某些生物学过程和设计众多功能性表面非常重要。但是,钉扎力通常会降低自驱动过程中液滴的速度和移动稳定性。本文提出了一种新颖的纳米柱表面设计,其结构密度由单层石墨烯覆盖,具有梯度密度,可实现水滴的超快速自驱动。经典的分子动力学结果提供了对增强的自发驾驶行为的深刻了解,并揭示了单层石墨烯降低钉扎力的潜在机理。液滴可以以75.7 m / s(272.52 km / h)的超高速度自最稀疏的柱子移动到最密集的柱子区域,而依靠单层石墨烯的湿润透明性由柱子基质的梯度分布密度产生可湿性梯度。特别是,梯度短柱状纹理触发了相反的自驱动规律,其中水滴从柱的最密区域移动到最稀疏区域,本质上是因为单层石墨烯导致梯度短柱状表面导致从疏水性向亲水性的湿润过渡可以吸附到最稀疏的短柱状纹理中。此外,阐明了柱形和柱状基质对水纳米滴自驾行为的影响机理。这些发现将在理论上指导石墨烯覆盖功能表面的设计,以自发驱动液滴。

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  • 来源
    《Applied Surface Science》 |2020年第15期|145976.1-145976.8|共8页
  • 作者

  • 作者单位

    Jiangsu Univ Inst Intelligent Flexible Mechatron Zhenjiang 212013 Peoples R China|Dalian Univ Technol Fac Vehicle Engn & Mech Dept Engn Mech State Key Lab Struct Anal Ind Equipment Dalian 116024 Peoples R China|Changzhou Univ Jiangsu Collaborat Innovat Ctr Photovolta Sci & E Changzhou 213164 Peoples R China;

    Jiangsu Univ Inst Intelligent Flexible Mechatron Zhenjiang 212013 Peoples R China;

    Jiangsu Univ Inst Intelligent Flexible Mechatron Zhenjiang 212013 Peoples R China|Changzhou Univ Jiangsu Collaborat Innovat Ctr Photovolta Sci & E Changzhou 213164 Peoples R China;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Spontaneous driving; Monolayer graphene; Pillared texture; Water droplet; Molecular dynamics;

    机译:自发驾驶;单层石墨烯;柱状纹理;水滴分子动力学;

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