微流控
纳米技术
自愈水凝胶
各向同性
弯曲分子几何
微观结构
材料科学
化学
复合材料
光学
高分子化学
物理
作者
Sha Cheng,Cheng Huang,Wen Chen,Pengchao Zhang
标识
DOI:10.1002/smtd.202300221
摘要
Abstract Directional liquid spreading has an irreplaceable role in applications such as microfluidic devices, disposable biosensors, and point‐of‐care diagnostics. However, how to achieve directional, rapid, and complete spreading (i.e., superspreading) of liquids without external energy input is a great challenge. Herein, inspired by the peristome surface of Nepenthes pitcher, the directional superspreading of water droplets on hydrogel surfaces with predesigned microchannels by using the synergistic effect of the liquid‐like property of hydrogels and the guidance of anisotropic microstructures is reported. Compared with the smooth ones, hydrogel surfaces with isotropic microstructures can facilitate the superspreading of water droplets, which can be realized within 500 ms in the absence of external forces. Furthermore, directional superspreading and the flow of water droplets are realized under the guidance of anisotropic microgrooves. Such a unique spreading behavior can also be observed on the hydrogel surfaces with various shaped microchannels, such as periodic, bent, shunted, divergent, and confluent morphologies, which have potential for the development of open microfluidic platforms for various healthcare‐related applications.
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