Accurate, consistent, and fast droplet splitting and dispensing in electrowetting on dielectric digital microfluidics

IF 4.7 Q2 NANOSCIENCE & NANOTECHNOLOGY Micro and Nano Systems Letters Pub Date : 2017-06-16 DOI:10.1186/s40486-017-0058-6
N. Y. Jagath B. Nikapitiya, Mun Mun Nahar, Hyejin Moon
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引用次数: 31

Abstract

This letter reports two novel electrode design considerations to satisfy two very important aspects of EWOD operation—(1) Highly consistent volume of generated droplets and (2) Highly improved accuracy in the generated droplet volume. Considering the design principles investigated two novel designs were proposed; L-junction electrode design to offer high throughput droplet generation and Y-junction electrode design to split a droplet very fast while maintaining equal volume of each part. Devices of novel designs were fabricated and tested, and the results are compared with those of conventional approach. It is demonstrated that inaccuracy and inconsistency of droplet volume dispensed in the device with novel electrode designs are as low as 0.17 and 0.10%, respectively, while those of conventional approach are 25 and 0.76%, respectively. The dispensing frequency is enhanced from 4 to 9?Hz by using the novel design.

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电介质数字微流体电润湿中准确,一致,快速的液滴分裂和分配
这封信报告了两个新的电极设计考虑,以满足EWOD操作的两个非常重要的方面-(1)生成液滴的高度一致的体积和(2)生成液滴体积的高度提高的精度。结合所研究的设计原则,提出了两种新的设计方案;l结电极设计提供高通量液滴产生和y结电极设计分裂液滴非常快,同时保持每个部分的等量。对新设计的装置进行了制作和测试,并与传统方法的结果进行了比较。结果表明,采用新型电极设计的装置,液滴体积分配的不准确性和不一致性分别低至0.17%和0.10%,而传统方法的不准确性和不一致性分别为25%和0.76%。点胶频率由4次提高到9次?Hz,采用新颖的设计。
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来源期刊
Micro and Nano Systems Letters
Micro and Nano Systems Letters Engineering-Biomedical Engineering
CiteScore
10.60
自引率
5.60%
发文量
16
审稿时长
13 weeks
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