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一种用于主动液滴操控的电热平台。

An electrothermal platform for active droplet manipulation.

作者信息

Liu Yahua, Xia Yuhang, Zhan Haiyang, Lu Chenguang, Yuan Zichao, Zhao Lei

机构信息

State Key Laboratory of High-performance Precision Manufacturing, Dalian University of Technology Dalian 116024 China

Key Laboratory of Icing and Anti/De-icing, China Aerodynamics Research and Development Center Mianyang Sichuan 621000 China.

出版信息

RSC Adv. 2023 May 9;13(20):14041-14047. doi: 10.1039/d3ra01108a. eCollection 2023 May 2.

Abstract

The smart control of droplet transport through surface structures and external fields provides exciting opportunities in engineering fields of phase change heat transfer, biomedical chips, and energy harvesting. Here we report the wedge-shaped slippery lubricant-infused porous surface (WS-SLIPS) as an electrothermal platform for active droplet manipulation. WS-SLIPS is fabricated by infusing a wedge-shaped superhydrophobic aluminum plate with phase-changeable paraffin. While the surface wettability of WS-SLIPS can be readily and reversibly switched by the freezing-melting cycle of paraffin, the curvature gradient of the wedge-shaped substrate automatically induces an uneven Laplace pressure inside the droplet, endowing WS-SLIPS the ability to directionally transport droplets without any extra energy input. We demonstrate that WS-SLIPS features spontaneous and controllable droplet transport capability to initiate, brake, lock, and resume the directional motion of various liquid droplets including water, saturated NaCl solution, ethanol solution, and glycerol, under the control of preset DC voltage (∼12 V). In addition, the WS-SLIPS can automatically repair surface scratches or indents when heated and retain the full liquid-manipulating capability afterward. The versatile and robust droplet manipulation platform of WS-SLIPS can be further used in practical scenarios such as laboratory-on-a-chip settings, chemical analysis and microfluidic reactors, paving a new path to develop advanced interface for multifunctional droplet transport.

摘要

通过表面结构和外部场对液滴传输进行智能控制,在相变传热、生物医学芯片和能量收集等工程领域提供了令人兴奋的机遇。在此,我们报告了一种楔形的注入润滑剂的多孔光滑表面(WS-SLIPS),作为一种用于主动液滴操控的电热平台。WS-SLIPS是通过将楔形超疏水铝板注入可相变的石蜡制成的。虽然WS-SLIPS的表面润湿性可通过石蜡的冻融循环轻松且可逆地切换,但楔形基底的曲率梯度会自动在液滴内部诱导出不均匀的拉普拉斯压力,赋予WS-SLIPS在无需任何额外能量输入的情况下定向传输液滴的能力。我们证明,在预设直流电压(约12V)的控制下,WS-SLIPS具有自发且可控的液滴传输能力,能够启动、制动、锁定和恢复包括水、饱和NaCl溶液、乙醇溶液和甘油在内的各种液滴的定向运动。此外,WS-SLIPS在加热时能够自动修复表面划痕或凹痕,并在之后保留完整的液体操控能力。WS-SLIPS这种多功能且强大的液滴操控平台可进一步应用于诸如芯片实验室设置、化学分析和微流体反应器等实际场景,为开发用于多功能液滴传输的先进界面铺平了一条新道路。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2300/10167797/f96d9eebbfc4/d3ra01108a-f1.jpg

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