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基于高Q值自组装单分子层修饰的压电单晶块体声波谐振器的新型气体传感器阵列

Novel Gas Sensor Arrays Based on High-Q SAM-Modified Piezotransduced Single-Crystal Silicon Bulk Acoustic Resonators.

作者信息

Zhao Yuan, Yang Qingrui, Chang Ye, Pang Wei, Zhang Hao, Duan Xuexin

机构信息

State Key Laboratory of Precision Measuring Technology & Instruments, Tianjin University, Tianjin 300072, China.

出版信息

Sensors (Basel). 2017 Jun 26;17(7):1507. doi: 10.3390/s17071507.

Abstract

This paper demonstrates a novel micro-size (120 μm × 200 μm) piezoelectric gas sensor based on a piezotransduced single-crystal silicon bulk acoustic resonator (PSBAR). The PSBARs operate at 102 MHz and possess high values (about 2000), ensuring the stability of the measurement. A corresponding gas sensor array is fabricated by integrating three different self-assembled monolayers (SAMs) modified PSBARs. The limit of detection (LOD) for ethanol vapor is demonstrated to be as low as 25 ppm with a sensitivity of about 1.5 Hz/ppm. Two sets of identification code bars based on the sensitivities and the adsorption energy constants are utilized to successfully discriminate isopropanol (IPA), ethanol, hexane and heptane vapors at low and high gas partial pressures, respectively. The proposed sensor array shows the potential to form a portable electronic nose system for volatile organic compound (VOC) differentiation.

摘要

本文展示了一种基于压电转换单晶硅体声波谐振器(PSBAR)的新型微型(120μm×200μm)压电气体传感器。PSBAR工作在102MHz,具有高 值(约2000),确保了测量的稳定性。通过集成三个不同的自组装单分子层(SAMs)修饰的PSBAR制造了相应的气体传感器阵列。乙醇蒸汽的检测限(LOD)低至25ppm,灵敏度约为1.5Hz/ppm。利用基于灵敏度和吸附能常数的两组识别码条分别成功区分了低气体分压和高气体分压下的异丙醇(IPA)、乙醇、己烷和庚烷蒸汽。所提出的传感器阵列显示出形成用于挥发性有机化合物(VOC)区分的便携式电子鼻系统的潜力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1b70/5539522/1011c6b9d577/sensors-17-01507-g001.jpg

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