基于欺骗局域表面等离子体的小型化微波微流控传感器

Hao Xu, Wen‐Sheng Zhao, Dawei Wang
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引用次数: 0

摘要

提出了一种用于检测液体介电常数的小型化折叠SLSP微波微流控传感器。该传感器为单层结构,采用微带和耦合支路馈电。四分之一模式设计可以产生与全模式情况相对应的共振,同时减小了液体的尺寸和数量。通过在垂直方向上引入额外的电容,折叠结构增强了慢波效应,进一步减小了谐振器的尺寸。带微流控通道的PDMS芯片置于谐振器上方。液体样品的注入会引起频率偏差,从而恢复液体性质。该传感器还有望用于血糖监测和可穿戴设备领域。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Miniaturized Microwave Microfluidic Sensor Based on Spoof Localized Surface Plasmons
In this paper, a miniaturized folded SLSP microwave microfluidic sensor for detecting liquid permittivity is proposed. The sensor has single-layer structure and fed with microstrips and coupling branches. The quarter-mode design can produce resonance corresponding to the full-mode case while reducing the size and the amount of liquid. By introducing additional capacitance in the vertical direction, the folded structure enhances the slow wave effect and further reduces the size of the resonator. A PDMS chip with a microfluidic channel is placed above the resonator. The injection of liquid sample would cause frequency deviation, so as to retrieve the liquid property. The sensor is also expected to be used in the field of blood glucose monitoring and wearable devices.
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