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Low-Cost Graphene-Based Digital Microfluidic System

机译:基于低成本的石墨烯的数字微流体系统

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摘要

In this work, the laser-scribing technique was used as a low-cost, rapid and facile method for fabricating digital microfluidic (DMF) systems. Laser-scribed graphene (LSG) electrodes are directly synthesized on flexible substrates to pattern the DMF electrode arrays. This facilitates the DMF electrodes’ fabrication process by eliminating many microfabrication steps. An electrowetting test was performed to investigate the effectiveness of the LSG DMF electrodes in changing the contact angles of droplets. Different DMF operations were successfully performed using the proposed LSG DMF chips in both open and closed DMF systems. The quality and output resolution were examined to assess the performance of such patterned electrodes in the DMF systems. To verify the efficacy of the LSG DMF chips, a one-step direct assay for the detection of Legionellapneumophila deoxyribonucleic acid (DNA) was performed on the chip without the need for any washing step. The high specificity in distinguishing a single-nucleotide mismatch was achieved by detecting target DNA concentrations as low as 1 nM. Our findings suggest that the proposed rapid and easy fabrication method for LSG DMF electrodes offers a great platform for low-cost and easily accessible point-of-care diagnostic devices.
机译:在这项工作中,激光划线技术被用作制造数字微流体(DMF)系统的低成本,快速和容易的方法。激光划线石墨烯(LSG)电极直接在柔性基板上合成,以绘制DMF电极阵列。这通过消除许多微制造步骤来促进DMF电极的制造过程。进行电润湿试验以研究LSG DMF电极在改变液滴的接触角度方面的有效性。使用Open和Closed DMF系统中所提出的LSG DMF芯片成功执行了不同的DMF操作。检查质量和输出分辨率,以评估DMF系统中这种图案电极的性能。为了验证LSG DMF芯片的功效,用于检测军团菌的一步直接测定在芯片上进行肺泡脱氧核糖核酸(DNA),而不需要任何洗涤步骤。通过检测低至1nm的靶DNA浓度来实现在区分单核苷酸不匹配时的高特异性。我们的研究结果表明,LSG DMF电极提出的快速和易于制造的方法为低成本和易于访问的护理点诊断设备提供了一个很好的平台。

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