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Paper Based Microfluidic Device Using Surface Acoustic Wave as Driving Source

机译:以表面声波为驱动源的纸基微流控装置

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It is necessary to implement pretreatment operations for a paper based microfluidic device. A paper based microfluidic device with SAW driving microfluid has been implemented. Trance analyte to be detected was absorbed into a filter paper at first, and mounted on PDMS blocks on a piezoelectric substrate to ensure that the indicting filter paper has a little gap with the piezoelectric substrate. Reagents were then pipetted on the piezoelectric substrate and transported by surface acoustic wave excited by an interdigital transducer, which was fabricated on a 1280-yx LiNbO3 using micro-electrical technology. A color was developed due to chemical reaction, and the analyte concentration was evaluated by its grey value. Nitrate ion was detected using the microfluidic system.
机译:有必要对基于纸的微流体装置实施预处理操作。具有SAW驱动微流体的基于纸的微流体装置已经被实现。首先将要检测的分析物吸收到滤纸中,然后安装在压电基板上的PDMS块上,以确保指示滤纸与压电基板之间的间隙很小。然后将试剂吸移到压电基板上,并通过由叉指式换能器激发的表面声波传输,该叉指换能器是使用微电子技术在1280-yx LiNbO3上制造的。由于化学反应而显色,并通过其灰度值评估分析物浓度。使用微流控系统检测硝酸根离子。

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