印刷电路板
可扩展性
微流控
数字微流体
基质(化学分析)
计算机硬件
工程类
计算机科学
嵌入式系统
电子工程
纳米技术
电气工程
材料科学
操作系统
复合材料
电压
电润湿
作者
Yaru Xing,Yu Liu,Rifei Chen,Yuyan Li,Chengzhi Zhang,Youwei Jiang,Yao Lu,Bingcheng Lin,Peizhong Chen,Ruijun Tian,Xianming Liu,Xing Cheng
出处
期刊:Lab on a Chip
[Royal Society of Chemistry]
日期:2021-01-01
卷期号:21 (10): 1886-1896
被引量:35
摘要
Two-dimensional digital microfluidic platforms, on which droplets are actuated by electrowetting on dielectrics, have merits such as dynamic reconfigurability and ease for automation. However, concerns for digital microfluidic platforms based on low-cost printed circuit boards, such as the scalability of the electrode array and the reliability of the device operation, should be addressed before high throughput and fully automatic applications can be realized. In this work we report the progress in addressing those issues by using active-matrix circuitry to automatically drive a large electrode array with enhanced device reliability. We describe the design and the fabrication of a robust and scalable active-matrix driven digital microfluidic platform based on printed-circuit board technology. Reliable actuation of aqueous and organic droplets is achieved using a free-standing double-layer hydrophobic membrane. To demonstrate the versatility of the digital microfluidic platform, a pentapeptide is synthesized on the device within 30 minutes. With these improvements, a fully automatic, scalable, robust, reusable, and low-cost digital microfluidic platform capable of parallel manipulation of a large number of droplets can find numerous applications in chemical engineering, bioengineering and biomedical engineering.
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