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Directional Liquid Spreading over Chemically Defined Radial Wettability Gradients

机译:化学定义的径向可湿性梯度上的定向液体扩散

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We investigate the motion of liquid droplets on chemically defined radial wettability gradients. The patterns consist of hydrophobic fluorinated self-assembled monolayers (SAMs) on oxidized silicon substrates. The design comprises a central hydrophobic circle of unpatterned SAMs surrounded by annular regions of radially oriented stripes of alternating wettability, i.e., hydrophilic and hydrophobic. Variation in the relative width of the stripes allows control over the macroscopic wettability. When a droplet is deposited in the middle, it will start to move over to the radially defined wettability gradient, away from the center because of the increasing relative surface area of hydrophilic matter for larger radii in the pattern. The focus of this article is on a qualitative description of the characteristic motion on such types of anisotropic patterns. The influence of design parameters such as pattern dimensions, steepness of the gradient, and connection between different areas on the behavior of the liquid are analyzed and discussed in terms of advancing and receding contact lines, contact angles, spatial extent, and overall velocity of the motion.
机译:我们研究了化学定义的径向可湿性梯度上液滴的运动。图案由氧化硅基板上的疏水氟化自组装单层(SAM)组成。该设计包括未构图的SAMs的中心疏水圈,周围是交替润湿的径向取向条纹的环形区域,即亲水性和疏水性。条的相对宽度的变化允许控制宏观润湿性。当液滴沉积在中间时,由于亲水性物质的相对表面积增加(对于图案中的较大半径而言),液滴将开始移动到径向定义的可湿性梯度,远离中心。本文的重点是对这类各向异性图案上的特征运动的定性描述。分析和讨论了设计参数的影响,例如图案尺寸,梯度的陡度以及不同区域之间的连接对液体行为的影响,并根据接触线的前进和后退,接触角,空间范围和整体速度进行了讨论。运动。

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