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Integrated Sample Preparation and Sensing: Polymer Microresonator Sensors Embedded in Digital Electrowetting Microfluidic Systems

机译:集成的样品制备和传感:嵌入在数字电润湿微流控系统中的聚合物微谐振器传感器

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摘要

Portable point-of-care (POC) medical diagnostic devices demand low power consumption, efficient use of low sample and reagent volumes, and small size. A “digital” electrowetting-on-dielectric (EWD) microfluidics system with integrated optical sensors is a promising platform for portable POC diagnostic devices that integrate sample preparation with sensing. Herein is reported the highest sensitivity and figure of merit (FOM) microresonator sensor integrated with an EWD system to date [FOM is the product of the quality (Q) factor and the sensitivity (S)]. The EWD system embedded microresonator sensor had a measured FOM of $0.60 times 10^{6} hbox{nm/RIU} ({rm Q} = 8,400, {rm S} = 72 hbox{nm/RIU})$ in 2-cSt silicone oil and water, which is nearly double the best FOM previously reported for an microresonator placed on top of an EWD system. Additionally, a nominal FOM of $1.2 times 10^{6} hbox{nm/RIU} ({rm Q} = 15 ,000, {rm S} = 82 hbox{nm/RIU})$ was measured for the vertically coupled sensor fabricated on a standard $hbox{SiO}_{2}$/Si substrate. This FOM is the highest reported to date for SU-8 microresonators probed at wavelengths around 1550 nm. These results indicate that high-performance polymer sensors can be integrated with low-power-consumption EWD microfluidics sample preparation systems toward the development of portable POC diagnostic devices.
机译:便携式即时医疗(POC)医疗诊断设备要求低功耗,有效利用少量样品和试剂以及体积小。具有集成光学传感器的“数字”电介质上电润湿(EWD)微流体系统是将样品制备与传感集成在一起的便携式POC诊断设备的有前途的平台。本文报道了迄今为止与EWD系统集成的最高灵敏度和品质因数(FOM)微谐振器传感器[FOM是质量(Q)因子和灵敏度(S)的乘积]。 EWD系统嵌入式微谐振器传感器在2-cSt中测得的FOM为$ 0.60乘以10 ^ {6} hbox {nm / RIU}({rm Q} = 8,400,{rm S} = 72 hbox {nm / RIU})$硅油和水,几乎是先前报道的放置在EWD系统顶部的微谐振器的最佳FOM的两倍。此外,对于垂直耦合传感器,标称FOM为$ 1.2乘以10 ^ {6} hbox {nm / RIU}({rm Q} = 15,000,{rm S} = 82 hbox {nm / RIU})$在标准的$ hbox {SiO} _ {2} $ / Si衬底上制造。该FOM是迄今为止SU-15微谐振器在1550 nm左右波长探测的最高报道。这些结果表明,高性能聚合物传感器可以与低功耗​​EWD微流体样品制备系统集成在一起,从而发展便携式POC诊断设备。

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