材料科学
3d打印
制作
莲花效应
纳米技术
微观结构
3D打印
表面粗糙度
微流控
复制(统计)
表面光洁度
胶粘剂
表面能
化学工程
复合材料
有机化学
图层(电子)
工程类
病理
数学
统计
替代医学
化学
原材料
医学
生物医学工程
作者
Yang Yang,Xiangjia Li,Xuan Zheng,Zeyu Chen,Qifa Zhou,Yong Chen
标识
DOI:10.1002/adma.201704912
摘要
Abstract Biomimetic functional surfaces are attracting increasing attention for various technological applications, especially the superhydrophobic surfaces inspired by plant leaves. However, the replication of the complex hierarchical microstructures is limited by the traditional fabrication techniques. In this paper, superhydrophobic micro‐scale artificial hairs with eggbeater heads inspired by Salvinia molesta leaf was fabricated by the Immersed surface accumulation three dimensional (3D) printing process. Multi‐walled carbon nanotubes were added to the photocurable resins to enhance the surface roughness and mechanical strength of the microstructures. The 3D printed eggbeater surface reveals interesting properties in terms of superhydrophobilicity and petal effect. The results show that a hydrophilic material can macroscopically behave as hydrophobic if a surface has proper microstructured features. The controllable adhesive force (from 23 μN to 55 μN) can be easily tuned with different number of eggbeater arms for potential applications such as micro hand for droplet manipulation. Furthermore, a new energy‐efficient oil/water separation solution based on our biomimetic structures was demonstrated. The results show that the 3D‐printed eggbeater structure could have numerous applications, including water droplet manipulation, 3D cell culture, micro reactor, oil spill clean‐up, and oil/water separation.
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