Nguyen Trieu, Sarkar Tanoy, Tran Tuan, Moinuddin Sakib M, Saha Dipongkor, Ahsan Fakhrul
College of Pharmacy, California Northstate University, Elk Grove, CA 95757, USA.
East Bay Institute for Research & Education (EBIRE), Mather, CA 95655, USA.
Micromachines (Basel). 2022 Aug 20;13(8):1357. doi: 10.3390/mi13081357.
We present a robust, low-cost fabrication method for implementation in multilayer soft photolithography to create a PDMS microfluidic chip with features possessing multiple height levels. This fabrication method requires neither a cleanroom facility nor an expensive UV exposure machine. The central part of the method stays on the alignment of numerous PDMS slabs on a wafer-scale instead of applying an alignment for a photomask positioned right above a prior exposure layer using a sophisticated mask aligner. We used a manual XYZR stage attached to a vacuum tweezer to manipulate the top PDMS slab. The bottom PDMS slab sat on a rotational stage to conveniently align with the top part. The movement of the two slabs was observed by a monocular scope with a coaxial light source. As an illustration of the potential of this system for fast and low-cost multilayer microfluidic device production, we demonstrate the microfabrication of a 3D microfluidic chaotic mixer. A discussion on another alternative method for the fabrication of multiple height levels is also presented, namely the micromilling approach.
我们提出了一种稳健、低成本的制造方法,用于在多层软光刻中实现,以创建具有多种高度级特征的聚二甲基硅氧烷(PDMS)微流控芯片。这种制造方法既不需要洁净室设施,也不需要昂贵的紫外线曝光机。该方法的核心在于在晶圆级上对齐多个PDMS板,而不是使用复杂的掩膜对准器对位于先前曝光层上方的光掩膜进行对准。我们使用连接到真空镊子的手动XYZR平台来操作顶部的PDMS板。底部的PDMS板放置在旋转平台上,以便于与顶部对齐。通过带有同轴光源的单目显微镜观察两个板的移动。作为该系统用于快速、低成本多层微流控设备生产潜力的例证,我们展示了一种3D微流控混沌混合器的微制造。还介绍了另一种制造多种高度级别的替代方法,即微铣削方法。