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用于超疏水表面上液滴操控的基于介质上电润湿的轨道技术

Orbital Electrowetting-on-Dielectric for Droplet Manipulation on Superhydrophobic Surfaces.

作者信息

Tan Jie, Fan Zeng, Zhou Mingfei, Liu Tong, Sun Shulan, Chen Guijun, Song Yongchen, Wang Zuankai, Jiang Dongyue

机构信息

Cancer Hospital of Dalian University of Technology (Liaoning Cancer Hospital & Institute), Shenyang, 110042, P. R. China.

Key Laboratory of Ocean Energy Utilization and Energy Conservation of Ministry of Education, Dalian University of Technology, Dalian, 116024, P. R. China.

出版信息

Adv Mater. 2024 Jun;36(24):e2314346. doi: 10.1002/adma.202314346. Epub 2024 Apr 15.

Abstract

Electrowetting-on-dielectric (EWOD), recognized as the most successful electrical droplet actuation method, is essential in diverse applications, ranging from thermal management to microfluidics and water harvesting. Despite significant advances, it remains challenging to achieve repeatability, high speed, and simple circuitry in EWOD-based droplet manipulation on superhydrophobic surfaces. Moreover, its efficient operation typically requires electrode arrays and sophisticated circuit control. Here, a newly observed droplet manipulation phenomenon on superhydrophobic surfaces with orbital EWOD (OEW) is reported. Due to the asymmetric electrowetting force generated on the orbit, flexible and versatile droplet manipulation is facilitated with OEW. It is demonstrated that OEW droplet manipulation on superhydrophobic surfaces exhibits higher speed (up to 5 times faster), enhanced functionality (antigravity), and manipulation of diverse liquids (acid, base, salt, organic, e.g., methyl blue, artificial blood) without contamination, and good durability after 1000 tests. It is envisioned that this robust droplet manipulation strategy using OEW will provide a valuable platform for various processes involving droplets, spanning from microfluidic devices to controllable chemical reactions. The previously unreported droplet manipulation phenomenon and control strategy shown here can potentially upgrade EWOD-based microfluidics, antifogging, anti-icing, dust removal, and beyond.

摘要

介电电泳(EWOD)被认为是最成功的电驱动液滴方法,在从热管理到微流体和集水等各种应用中都至关重要。尽管取得了重大进展,但在超疏水表面上基于EWOD的液滴操纵中实现可重复性、高速和简单电路仍然具有挑战性。此外,其高效运行通常需要电极阵列和复杂的电路控制。在此,报道了一种在具有轨道EWOD(OEW)的超疏水表面上新观察到的液滴操纵现象。由于在轨道上产生的不对称电润湿力,OEW促进了灵活多样的液滴操纵。结果表明,在超疏水表面上进行OEW液滴操纵具有更高的速度(快达5倍)、增强的功能(反重力),并且能够操纵多种液体(酸、碱、盐、有机物,如甲基蓝、人造血液)而不产生污染,并且在1000次测试后具有良好的耐久性。可以设想,这种使用OEW的强大液滴操纵策略将为涉及液滴的各种过程提供一个有价值的平台,从微流体装置到可控化学反应。此处展示的先前未报道的液滴操纵现象和控制策略可能会提升基于EWOD的微流体、防雾、防冰、除尘等领域的性能。

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