具有形状记忆微/纳米结构的超疏水表面及其在用于液滴存储的可重写芯片中的应用。

Superhydrophobic Surface With Shape Memory Micro/Nanostructure and Its Application in Rewritable Chip for Droplet Storage.

作者信息

Lv Tong, Cheng Zhongjun, Zhang Dongjie, Zhang Enshuang, Zhao Qianlong, Liu Yuyan, Jiang Lei

机构信息

Institute of Chemistry, Chinese Academy of Sciences , Beijing 100080, PR China.

出版信息

ACS Nano. 2016 Oct 25;10(10):9379-9386. doi: 10.1021/acsnano.6b04257. Epub 2016 Sep 21.

Abstract

Recently, superhydrophobic surfaces with tunable wettability have aroused much attention. Noticeably, almost all present smart performances rely on the variation of surface chemistry on static micro/nanostructure, to obtain a surface with dynamically tunable micro/nanostructure, especially that can memorize and keep different micro/nanostructures and related wettabilities, is still a challenge. Herein, by creating micro/nanostructured arrays on shape memory polymer, a superhydrophobic surface that has shape memory ability in changing and recovering its hierarchical structures and related wettabilities was reported. Meanwhile, the surface was successfully used in the rewritable functional chip for droplet storage by designing microstructure-dependent patterns, which breaks through current research that structure patterns cannot be reprogrammed. This article advances a superhydrophobic surface with shape memory hierarchical structure and the application in rewritable functional chip, which could start some fresh ideas for the development of smart superhydrophobic surface.

摘要

近年来,具有可调润湿性的超疏水表面引起了广泛关注。值得注意的是,目前几乎所有的智能性能都依赖于静态微/纳米结构上表面化学的变化,要获得具有动态可调微/纳米结构的表面,尤其是能够记忆并保持不同微/纳米结构及相关润湿性的表面,仍然是一个挑战。在此,通过在形状记忆聚合物上创建微/纳米结构阵列,报道了一种具有形状记忆能力的超疏水表面,该表面能够改变并恢复其分级结构及相关润湿性。同时,通过设计与微结构相关的图案,该表面成功应用于用于液滴存储的可重写功能芯片,突破了当前结构图案无法重新编程的研究现状。本文提出了一种具有形状记忆分级结构的超疏水表面及其在可重写功能芯片中的应用,这可能为智能超疏水表面的发展开启一些新的思路。

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