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超疏水表面上水滴的光学引导热释电操控

Optically Guided Pyroelectric Manipulation of Water Droplet on a Superhydrophobic Surface.

作者信息

Yan Weishan, Zhao Chaopeng, Luo Wenyao, Zhang Wangyang, Li Xi, Liu Duo

机构信息

Institute of Novel Semiconductors, State Key Laboratory of Crystal Materials, Shandong University, 27 South Shanda Road, Jinan, Shandong 250100, P. R. China.

Key Laboratory of Experimental Teratology, Ministry of Education, Institute of Medical Genetics, School of Medicine, Shandong University, Jinan, Shandong 250012, P. R. China.

出版信息

ACS Appl Mater Interfaces. 2021 May 19;13(19):23181-23190. doi: 10.1021/acsami.1c03407. Epub 2021 May 4.

Abstract

Controlled droplet manipulation by light has tremendous technological potential. We report here a method based on photothermally induced pyroelectric effects that enables manipulation and maneuvering of a water droplet on a superhydrophobic surface fabricated on lithium tantalite (LiTaO). In particular, we demonstrate that the pyroelectric charge distribution has an essential role in this process. Evenly distributed charges promote a rapid hydrophobic to hydrophilic transition featuring a very large water contact angle (WCA) change of ∼76.5° in air. This process becomes fully reversible in silicone oil. In contrast, the localized charge distribution induced by guided laser illumination leads to very different and versatile functionalities, including droplet shape control and motion manipulation. The influence of a saline solution is also investigated and compared to the deionized water droplet. The focusing effect of the water droplet, a phenomenon that widely exists in nature, is particularly of interest. Simple tuning of the laser incident angle results in droplet deformation, jetting, splitting, and guided motion. Potential applications, such as droplet pinning and transfer, are presented. This approach offers a wide range of versatile functionalities and ready controllability, including contactless, electrodeless, and precise spatial and fast temporal control, with tremendous potential for applications requiring remote droplet control.

摘要

通过光对液滴进行控制操作具有巨大的技术潜力。我们在此报告一种基于光热诱导热电效应的方法,该方法能够对钽酸锂(LiTaO)上制备的超疏水表面上的水滴进行操控和移动。特别地,我们证明了热电电荷分布在这一过程中起着至关重要的作用。均匀分布的电荷促进了从疏水到亲水的快速转变,在空气中水接触角(WCA)有非常大的变化,约为76.5°。在硅油中这个过程是完全可逆的。相比之下,由激光引导照射诱导的局部电荷分布会导致截然不同且多功能的特性,包括液滴形状控制和运动操控。还研究了盐溶液的影响并与去离子水滴进行了比较。水滴的聚焦效应是一种广泛存在于自然界的现象,尤其令人感兴趣。简单调整激光入射角会导致液滴变形、喷射、分裂和引导运动。展示了诸如液滴固定和转移等潜在应用。这种方法提供了广泛的多功能特性和易于控制的能力,包括非接触、无电极以及精确的空间和快速的时间控制,对于需要远程液滴控制的应用具有巨大潜力。

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