State Key Laboratory of High-Performance Precision Manufacturing, Dalian University of Technology, Dalian 116024, P. R. China.
Sci Adv. 2023 Apr 21;9(16):eadg2352. doi: 10.1126/sciadv.adg2352. Epub 2023 Apr 19.
Spatiotemporally controllable droplet manipulation is essential in diverse applications, ranging from thermal management to microfluidics and water harvesting. Despite considerable advances, droplet manipulation without surface or droplet pretreatment is still challenging in terms of response and functional adaptability. Here, a droplet ultrasonic tweezer (DUT) based on phased array is proposed for versatile droplet manipulation. The DUT can generate a twin trap ultrasonic field at the focal point for trapping and maneuvering the droplet by changing the position of the focal point, which enables a highly flexible and precise programmable control. By leveraging the acoustic radiation force resulting from the twin trap, the droplet can pass through a confined slit 2.5 times smaller than its own size, cross a slope with an inclination up to 80°, and even reciprocate in the vertical direction. These findings provide a satisfactory paradigm for robust contactless droplet manipulation in various practical settings including droplet ballistic ejection, droplet dispensing, and surface cleaning.
时空可控的液滴操控在从热管理到微流控和水收集等各种应用中至关重要。尽管已经取得了相当大的进展,但在无需表面或液滴预处理的情况下进行液滴操控,在响应和功能适应性方面仍然具有挑战性。在这里,提出了一种基于相控阵的液滴超声镊子(DUT),用于多功能液滴操控。DUT 可以在焦点处产生双阱超声场,通过改变焦点位置来捕获和操纵液滴,从而实现高度灵活和精确的可编程控制。利用双阱产生的声辐射力,液滴可以穿过比自身尺寸小 2.5 倍的受限狭缝,跨越高达 80°的斜坡,甚至在垂直方向上往复运动。这些发现为各种实际应用中的稳健非接触式液滴操控提供了一个令人满意的范例,包括液滴弹道喷射、液滴分配和表面清洁。