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Investigation of wax and paper materials for the fabrication of paper-based microfluidic devices

机译:用于制造纸基微流体装置的蜡和纸材料的研究

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摘要

Paper-based microfluidic devices hold great potential in today's microfluidic applications. They offer low costs, simple and quick fabrication processes, ease of uses, etc. In this work, several wax and paper materials are investigated for the fabrication of paper-based microfluidic devices. A novel method of using wax as a suitable backing to a paper-based analytical device has been demonstrated. Governing equations for the mechanics of the fluid flow in paper-based channels with constant widths have been experimentally validated. Experimental results showing deviations from the governing equations have been verified using fluidic channels with varying widths. There lies the possibility of manipulation of the fluid flow in paper-based microfluidic devices solely using geometric factors. This opens up many potential applications that may require sequential delivery of reagents or samples. Lastly, properties of paper such as the average pore diameter and permeability can be deduced from experimental results.
机译:纸基微流体设备在当今的微流体应用中具有巨大的潜力。它们提供了低成本,简单快速的制造工艺,易于使用等优点。在这项工作中,研究了几种蜡和纸材料,用于制造纸基微流体装置。已经证明了使用蜡作为基于纸的分析装置的合适背衬的新颖方法。具有恒定宽度的纸质通道中流体流动的力学控制方程已通过实验验证。实验结果表明,与控制方程式的偏差已经通过使用宽度可变的流体通道进行了验证。存在仅使用几何因素来操纵基于纸的微流体装置中的流体流动的可能性。这打开了许多潜在的应用,可能需要顺序输送试剂或样品。最后,可以从实验结果推导出纸的性质,例如平均孔径和渗透率。

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