Nakashima Y, Nakanishi Y, Yasuda T
Graduate School of Science and Technology, Kumamoto University, 2-39-1 Kurokami, Chuo-ku, Kumamoto 096-8555, Japan.
Graduate School of Life Science and Systems Engineering, Kyushu Institute of Technology, 2-4 Hibikino, Kitakyushu 808-0196, Japan.
Rev Sci Instrum. 2015 Jan;86(1):015001. doi: 10.1063/1.4905530.
This paper presents a microfluidic device that can automatically transport a droplet on a plastic plate. This device consists of a Cyclo Olefin Polymer (COP) plate and a SiO2 membrane and has wettability gradient surface. Lithographic patterns of hydrophilic SiO2 permitted wettability modification of a hydrophobic COP surface. A series of alternate hydrophobic and hydrophilic wedge-shaped patterns generated a required gradient in wettability. When we dropped a droplet on the wettability gradient surface, it moved along the wettability gradient due to an imbalance between surface tension forces acting on the opposite sides of the droplet edge. The droplet transportation test was carried out using water of 5 μl. As a result, we succeeded in automatically transporting the droplet on the SiO2/COP wettability gradient pattern. We also carried out droplet transportation in an enclosed microchannel for preventing droplet evaporation using DI (Deionized) water of 5 μl. In this case, the droplet was automatically transported by forming the wettability gradient pattern at the top and bottom in an enclosed microchannel without evaporation.
本文介绍了一种能够在塑料板上自动输送液滴的微流控装置。该装置由环烯烃聚合物(COP)板和SiO₂膜组成,并具有润湿性梯度表面。亲水性SiO₂的光刻图案实现了对疏水性COP表面润湿性的改性。一系列交替的疏水和亲水楔形图案产生了所需的润湿性梯度。当我们在润湿性梯度表面上滴加一个液滴时,由于作用在液滴边缘相对两侧的表面张力不平衡,它会沿着润湿性梯度移动。使用5μl的水进行了液滴输送测试。结果,我们成功地在SiO₂/COP润湿性梯度图案上自动输送了液滴。我们还在封闭的微通道中进行了液滴输送,以防止使用5μl去离子水(DI)的液滴蒸发。在这种情况下,通过在封闭微通道的顶部和底部形成润湿性梯度图案,液滴在不蒸发的情况下自动输送。