绘图仪
微流控
制作
快速成型
计算机科学
相容性(地球化学)
吞吐量
可用性
实验室晶片
纳米技术
嵌入式系统
材料科学
人机交互
操作系统
病理
复合材料
替代医学
无线
医学
作者
Fariba Ghaderinezhad,Reza Amin,Mikail Temirel,Bekir Yenilmez,Adam Wentworth,Savaş Taşoğlu
标识
DOI:10.1038/s41598-017-02931-6
摘要
Paper-based micro analytical devices offer significant advantages compared to the conventional microfluidic chips including cost-effectiveness, ease of fabrication, and ease of use while preserving critical features including strong capillary action and biological compatibility. In this work, we demonstrate an inexpensive, rapid method for high-throughput fabrication of paper-based microfluidics by patterning hydrophobic barriers using a desktop pen plotter integrated with a custom-made, low-cost paper feeder. We tested various types of commercial permanent markers and compared their water-resistant capabilities for creating hydrophobic barriers. Additionally, we studied the performance of markers with different types of paper, plotting speeds, and pattern dimensions. To verify the effectiveness of the presented fabrication method, colorimetric analysis was performed on the results of a glucose assay.
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