Liu Ming, Li Chenghao, Peng Zhilong, Chen Shaohua, Zhang Bo
Institute of Advanced Structure Technology, Beijing Institute of Technology, Beijing 100081, People's Republic of China.
Beijing Key Laboratory of Lightweight Multi-functional Composite Materials and Structures, Beijing Institute of Technology, Beijing 100081, People's Republic of China.
Langmuir. 2022 Mar 29;38(12):3917-3924. doi: 10.1021/acs.langmuir.2c00194. Epub 2022 Mar 17.
The flexible manipulation of droplets manifests a wide spectrum of applications, such as micro-flow control, drug-targeted therapy, and microelectromechanical system heat dissipation. How to realize the efficient control of droplets has become a problem of concern. In this paper, a simple method that can realize the transport of droplets along any controllable path is proposed. It not only has a simple preparation process and clear transport mechanism but is also easy to realize in manipulation technology. A magnetic-sensitive surface is prepared by filling a polymer matrix with magnetic particles and immersing in a lubricant. Under the action of an external magnetic field, rough microstructures are generated locally on the surface, forming the wettability gradient with the area far away from the field. Moving the magnetic field, the wettability gradient region moves accordingly and drives droplets to transport. To better control the transport path of droplets or realize a more complex path design, a ring-shaped magnetic field is further adopted, during which the droplet is automatically located in the ring-shaped region and moves with the movement of the ring-shaped magnetic field. The present technique is simple and easy to implement, which should be helpful in the field of precise regulation of the droplet position.
液滴的灵活操控展现出广泛的应用,如微流控、药物靶向治疗以及微机电系统散热等。如何实现对液滴的高效控制已成为一个备受关注的问题。本文提出了一种能够实现液滴沿任意可控路径传输的简单方法。它不仅制备过程简单且传输机制清晰,在操控技术上也易于实现。通过将磁性颗粒填充到聚合物基体中并浸入润滑剂来制备磁敏表面。在外加磁场作用下,表面局部会产生粗糙微结构,与远离磁场的区域形成润湿性梯度。移动磁场时,润湿性梯度区域随之移动并驱动液滴传输。为了更好地控制液滴的传输路径或实现更复杂的路径设计,进一步采用环形磁场,在此过程中液滴自动定位在环形区域并随环形磁场移动。本技术简单易实施,应有助于液滴位置精确调控领域。