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Ultrasensitive Optical Detection of Water Pressure in Microfluidics Using Smart Reduced Graphene Oxide Glass
W.Xin; T.G.Wu; T.T.Zou; Y.Wang; W.S.Jiang; F.Xing
2019
发表期刊Frontiers in Chemistry
ISSN2296-2646
卷号7页码:8
摘要Despite recent progresses in the field of microfluidics, the effect of liquid pressure on the detection accuracy has been rarely studied. Here, we perform a quantitative analysis of such effect, by utilizing the sensitive optical responses of graphene to the refractive index (RI) change of its surrounding environment. We utilize a reflection coupling con figuration by combining the total internal reflection (TIR) and ultrasonic waves. The high-performance graphene is processed on common glasses by using the solution-processable oxidation-reduction method. We find that the RI change of water caused by a pressure as small as 500 Pa generated by the liquid level change in the microfluidics can be measured directly. The detection accuracy and response time limits are approximately 280 Pa and 100 ns, respectively. The Maxwell's boundary conditions, Fresnel's law, and Pascal's law are used in theoretical analyses. This work highlights the importance of liquid pressure in microfluidics and provides guidance in designing and accurate detection of microfluidic devices.
关键词reduced graphene oxide,microfludics,polarization-dependent total,internal reflection,ultrasonic waves,water pressure,sensors,films,Chemistry
DOI10.3389/fchem.2019.00395
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收录类别SCI
语种英语
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被引频次:10[WOS]   [WOS记录]     [WOS相关记录]
文献类型期刊论文
条目标识符http://ir.ciomp.ac.cn/handle/181722/62924
专题中国科学院长春光学精密机械与物理研究所
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GB/T 7714
W.Xin,T.G.Wu,T.T.Zou,et al. Ultrasensitive Optical Detection of Water Pressure in Microfluidics Using Smart Reduced Graphene Oxide Glass[J]. Frontiers in Chemistry,2019,7:8.
APA W.Xin,T.G.Wu,T.T.Zou,Y.Wang,W.S.Jiang,&F.Xing.(2019).Ultrasensitive Optical Detection of Water Pressure in Microfluidics Using Smart Reduced Graphene Oxide Glass.Frontiers in Chemistry,7,8.
MLA W.Xin,et al."Ultrasensitive Optical Detection of Water Pressure in Microfluidics Using Smart Reduced Graphene Oxide Glass".Frontiers in Chemistry 7(2019):8.
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