Zhang Hui, Wang Pu, Liu Yang, Dai Songjie, Zhu Yijun, Li Baotong, Dong Guangneng
Key Laboratory of Education Ministry for Modern Design and Rotor-Bearing System, Xi'an Jiaotong University, Xi'an 710049, P. R. China.
ACS Appl Mater Interfaces. 2024 Aug 7;16(31):41694-41703. doi: 10.1021/acsami.4c07736. Epub 2024 Jul 29.
Unidirectional transport of liquids has attracted the attention of researchers in recent years for its wide application foreground. However, it is still a challenge to control the spreading of liquid, especially for oils with relatively high viscosity. In this paper, a flexible surface textured with branch-shaped microstructures is proposed. These asymmetric microstructures exhibit excellent unidirectional spreading behaviors for various oils. By suitably stretching the flexible surface to different stretch ratios, the spreading length of the oil droplets can be controlled. Moreover, the ongoing forward spreading of oil droplets can be suspended dynamically when the surface is stretched to 40%. Corresponding mechanism analysis demonstrates that surface stretching can narrow and close the microvalves between adjacent branches, which restrain the flow of the precursor film and the primary droplet. The switchable unidirectional spreading behavior enables the surface with such microstructures to be used for oil transportation, oil-water separation, and controllable lubrication.
近年来,液体的单向传输因其广阔的应用前景而吸引了研究人员的关注。然而,控制液体的铺展仍然是一个挑战,特别是对于粘度相对较高的油类。在本文中,提出了一种具有树枝状微结构的柔性表面。这些不对称微结构对各种油类表现出优异的单向铺展行为。通过将柔性表面适当地拉伸到不同的拉伸比,可以控制油滴的铺展长度。此外,当表面拉伸到40%时,油滴正在进行的向前铺展可以动态暂停。相应的机理分析表明,表面拉伸可以使相邻分支之间的微阀变窄并关闭,从而抑制前驱膜和初级液滴的流动。这种可切换的单向铺展行为使得具有这种微结构的表面可用于油类运输、油水分离和可控润滑。