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曲率棘轮表面上的智能定向液体操控

Smart Directional Liquid Manipulation on Curvature-Ratchet Surfaces.

作者信息

Miao Jiaqi, Tsang Alan C H

机构信息

Department of Mechanical Engineering, The University of Hong Kong, Hong Kong, China.

出版信息

ACS Nano. 2025 Feb 11;19(5):5829-5838. doi: 10.1021/acsnano.4c18229. Epub 2025 Jan 30.

Abstract

Structured surfaces leverage interfacial energy for directional liquid manipulation without external power, showing tremendous potential in microfluidics, green energy and biomedical applications. While the interplay of interfacial energy between solid surfaces and liquids is crucial for liquid manipulation, a systematic understanding of how the balance in liquid-solid interfacial energy affects liquid behaviors remains lacking. Here, using the curvature-ratchet surface as a generic example, we reveal the complex directional liquid dynamics inherent in the subtle regulation of liquid-solid interfacial energy. We show that curvature and tilt features regulate Laplace pressure asymmetry to enable directional, bidirectional and reverse liquid manipulation. These processes can be modulated by surface free energy and liquid surface tension, and we define their ratio as a new dimensionless number to characterize the liquid-solid interfacial energy relationship. The balanced liquid control happens when ∼ 1, which facilitates versatile liquid behaviors, e.g., fan-shaped spreading, gradient-induced redirection, and back-and-forth transport on various surface array arrangements, all resulting from matching structural designs with the proper . Inspired by this, we showcase an innovative liquid-based information encryption technique, where the liquid displays correct information on preprogrammed surfaces only at designated values. This study lays the groundwork for smart directional liquid manipulation and broadens its application domains.

摘要

结构化表面利用界面能实现无外部动力的定向液体操控,在微流控、绿色能源和生物医学应用中展现出巨大潜力。虽然固体表面与液体之间的界面能相互作用对液体操控至关重要,但目前仍缺乏对液 - 固界面能平衡如何影响液体行为的系统理解。在此,以曲率棘轮表面作为一个通用示例,我们揭示了液 - 固界面能精细调控中固有的复杂定向液体动力学。我们表明,曲率和倾斜特征调节拉普拉斯压力不对称性,以实现定向、双向和反向液体操控。这些过程可由表面自由能和液体表面张力调节,并且我们将它们的比值定义为一个新的无量纲数,以表征液 - 固界面能关系。当该无量纲数约为1时会发生平衡的液体控制,这有利于实现多种液体行为,例如扇形铺展、梯度诱导重定向以及在各种表面阵列排列上的来回传输,所有这些都是由结构设计与合适的无量纲数相匹配所导致的。受此启发,我们展示了一种创新的基于液体的信息加密技术,其中液体仅在指定的无量纲数值下在预编程表面上显示正确信息。这项研究为智能定向液体操控奠定了基础,并拓宽了其应用领域。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/42b0/11823629/327052f35d83/nn4c18229_0001.jpg

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