Lei Lei, Achenbach Sven, Wells Garth, Zhang Hongbo, Zhang Wenjun
School of Integrated Circuit Science and Engineering, Beihang University, Beijing 100191, China.
Department of Mechanical Engineering, University of Saskatchewan, Saskatoon, SK S7N 5A9, Canada.
Micromachines (Basel). 2024 Aug 31;15(9):1118. doi: 10.3390/mi15091118.
This paper presents a novel design of the device to generate microspheres or micro-droplets based on the membrane emulsification principle. Specifically, the novelty of the device lies in a proposed two-layer or stepwise (by generalization) membrane structure. An important benefit of the stepwise membrane is that it can be fabricated with the low-cost material (SU-8) and using the conventional lithography technology along with a conventional image-based alignment technique. The experiment to examine the effectiveness of the proposed membrane was conducted, and the result shows that microspheres with the size of 2.3 μm and with the size uniformity of 0.8 μm can be achieved, which meets the requirements for most applications in industries. It is noted that the traditional membrane emulsification method can only produce microspheres of around 20 μm. The main contribution of this paper is thus the new design principle of membranes (i.e., stepwise structure), which can be made by the cost-effective fabrication technique, for high performance of droplets production.
本文提出了一种基于膜乳化原理生成微球或微液滴的装置的新颖设计。具体而言,该装置的新颖之处在于所提出的两层或逐步(广义而言)的膜结构。逐步膜的一个重要优点是它可以用低成本材料(SU-8)制造,并使用传统光刻技术以及传统的基于图像的对准技术。进行了检验所提出膜有效性的实验,结果表明可以实现尺寸为2.3μm且尺寸均匀性为0.8μm的微球,这满足了工业中大多数应用的要求。需要注意的是,传统的膜乳化方法只能生产约20μm的微球。因此,本文的主要贡献是膜的新设计原理(即逐步结构),它可以通过具有成本效益的制造技术来制造,以实现高性能的液滴生产。