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Comparison of Nail Polish Meth(Acrylates) (MA) Gel Photoresist and Vinyl Adhesive Paper for Low-Cost Microfluidics Fabrication

机译:指甲油甲基(丙烯酸酯)(MA)凝胶光致抗蚀剂和乙烯基粘合剂用于低成本微流体制造的比较

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摘要

There are variety methods and materials for fabrication of the master mold for microfluidic system. In this report, two simple low-cost methods for fabrication of master molds for microfluidic chips are described and compared in quality of molds, thickness and resolution of micro-channels, design complexity, error tolerance and executive time. The first approach can create a master mold just in 5 min by using cutting plotter to cut the design out from vinyl adhesive paper based on the previous design; after that, the assembly attached into the petri dish to fabricate the complete mold. The second one is using nail polish meth(acrylates) (MA) gel as photoresist material to alter expensive SU-8 photoresist in soft photolithography technique and LED-UV light. These processes are simple, short time prototyping, inexpensive materials and no requirement for sophisticated equipment. Both methods can achieve the channels with the depth up to 80 μm. However, the channels of UV gel method are less affected by changes in temperature which enables more complex design as narrow as 200 μm in width compared to 500 μm of craft cutter method. The comparison of two proposed methods shows that UV gel satisfies the important demand for microfluidic master mold fabrication: low cost, possibility of more complex pattern in short time (15 min).
机译:有各种方法和材料用于制造用于微流体系统的母模。在本报告中,描述了两种简单的低成本方法,用于制备用于微流体芯片的母模的制造,并在微型通道的质量,微通道,设计复杂性,误差和行政时间的质量下进行比较。第一种方法可以通过使用切割绘图仪在5分钟内在5分钟内通过基于先前的设计从乙烯基粘合剂纸切出设计的母模;之后,组件连接到培养皿中以制造完整的模具。第二个是使用指甲油甲基(丙烯酸酯)(MA)凝胶作为光致抗蚀剂材料,以改变柔软的光刻技术和LED-UV光的昂贵的SU-8光致抗蚀剂。这些过程简单,时间短,原型,廉价的材料,无需精密设备。两种方法都可以实现高达80μm的深度的通道。然而,UV凝胶方法的通道受温度变化的影响较小,其使得更复杂的设计与宽度为200μm的宽度相比,与500μm的工艺刀具方法相比。两个提出的方法的比较表明,UV凝胶满足微流体母模制造的重要需求:低成本,短时间内更复杂的图案(15分钟)。

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