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A microwave sensor dedicated to dielectric spectroscopy of nanoliter volumes of liquids medium and flowing particles

机译:专门用于介电光谱的纳升级液体介质和流动颗粒的微波传感器

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This paper presents a RF biosensor dedicated to the microwave dielectric spectroscopy on nanoliter volumes of liquids or to the detection and analysis on flowing microscale particles. This sensor uses a microfluidic network in order to guide the liquid and drive the particles to analyze. Once properly calibrated this sensor should allow measuring the intrinsic dielectric properties of unknown liquid medium and even individual characteristics of flowing particles. Indeed characterizations done on small volumes of liquids with this device showed a good agreement with macro scale measurements done using a coaxial probe. To demonstrate its sensing capabilities, experiments with polystyrene beads have been first performed and compared with 3D electromagnetic simulations which show that potential high detection sensitivity can be expected. This opens attractive prospects in the frame of microwave dielectric spectroscopy for microanalysis of various dielectric particles like biological cells as example.
机译:本文介绍了专用于微波介电光谱对纳米凝胶体积液体的微波介质光谱或流动微粒状颗粒的检测和分析。该传感器使用微流体网络以引导液体并驱动颗粒进行分析。一旦适当校准,该传感器应允许测量未知液体介质的内在电介质特性,甚至流动颗粒的各个特性。在具有该装置的小体积液体上进行的实际表征表现出使用同轴探针完成的宏观测量的良好一致性。为了证明其传感能力,首先进行了用聚苯乙烯珠粒的实验,并与3D电磁模拟进行比较,表明可以预期潜在的高检测灵敏度。这在微波介电光谱框架中打开了有吸引力的前景,以进行各种介电颗粒的微量分析,如生物细胞一样。

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