用于超细粒子传感的双高频表面声波谐振器

S. Thomas, Z. Rácz, M. Cole, J. Gardner
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引用次数: 10

摘要

本文描述了一种低成本、鲁棒的表面声波谐振器(SAWR)微传感器的开发,该传感器能够检测小于1ng的亚微米大小的颗粒。该装置包括两个在st切割石英上制造的262 MHz瑞利波SAW谐振器,其中一个用于粒子传感,另一个用作参考通道。研究了不同粒径颗粒(碳、金、蔗糖、硅、聚四氟乙烯)的电声检测。在检测直径为750nm的金颗粒时,发现SAWR的质量灵敏度通常为275 Hz/ng或4 pg/Hz。我们相信,该装置可以作为一种低成本、低功耗的微传感器,用于实时、无所不在的空气颗粒物监测。特别是,我们的SAWR传感器可用于检测当今城市空气中超细颗粒污染物(PM2.5)的典型水平。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Dual high-frequency Surface Acoustic Wave Resonator for ultrafine particle sensing
This paper describes the development of a low-cost robust Surface Acoustic Wave Resonator (SAWR) micro sensor capable of detecting sub-micron size particles below 1 ng. The device comprises two 262 MHz Rayleigh wave SAW resonators fabricated on ST-cut quartz where one is used for particle sensing and the other as a reference channel. Electro-acoustic detection of different particles (including carbon, gold, sucrose, silicon, and PTFE) with different diameters was studied. The mass sensitivity of the SAWR was found to be typically 275 Hz/ng or 4 pg/Hz for the detection of 750 nm diameter gold particles. We believe that the device could be used as a low-cost and low power microsensor for the real-time and ubiquitous monitoring of airborne particulate matter. In particular, our SAWR sensor can be used to detect the typical levels of ultrafine particulate pollutants (PM2.5) found in city air today.
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