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A Capacitive Micromachined Ultrasonic Transducer-Based Resonant Sensor Array for Portable Volatile Organic Compound Detection with Wireless Systems

机译:基于电容微机械超声换能器的共振传感器阵列用于无线系统中的便携式挥发性有机化合物检测

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摘要

The development of portable volatile organic compound (VOC) sensors is essential for home healthcare and workplace safety because VOCs are environmental pollutants that may critically affect human health. Here, we report a compact and portable sensor platform based on a capacitive micromachined ultrasonic transducer (CMUT) array offering multiplex detection of various VOCs (toluene, acetone, ethanol, and methanol) using a single read-out system. Three CMUT resonant devices were functionalized with three different layers: (1) phenyl-selective peptide, (2) colloids of single-walled nanotubes and peptide, and (3) poly(styrene-co-allyl alcohol). As each device exhibited different sensitivities to the four VOCs, we performed principal component analysis to achieve selective detection of all four gases. For the simultaneous detection of VOCs using CMUT sensors, the changes in the resonant frequencies of three devices were monitored in real time, but using only a single oscillator through an electrically controlled relay to achieve compactness. In addition, by devising a wireless system, measurement results were transmitted to a smartphone to monitor the concentration of VOCs. We used multiple sensors to obtain a larger number of fingerprints for pattern recognition to enhance selectivity but interfaced these sensors with a single read-out circuit to minimize the footprint of the overall system. The compact CMUT-based sensor array based on a multiplex detection scheme is a promising sensor platform for portable VOC monitoring.
机译:便携式挥发性有机化合物(VOC)传感器的开发对于家庭医疗保健和工作场所安全至关重要,因为挥发性有机化合物是可能严重影响人类健康的环境污染物。在这里,我们报告了一个基于电容式微机械超声换能器(CMUT)阵列的紧凑型便携式传感器平台,该阵列可使用单个读取系统对多种VOC(甲苯,丙酮,乙醇和甲醇)进行多重检测。三个CMUT谐振装置通过三个不同的层进行了功能化:(1)苯基选择性肽,(2)单壁纳米管和肽的胶体,以及(3)聚(苯乙烯-共烯丙基醇)。由于每种设备对四种VOC的敏感性不同,我们进行了主成分分析以选择性检测所有四种气体。对于使用CMUT传感器同时检测VOC的情况,可以实时监控三个设备的谐振频率变化,但是通过电控继电器仅使用单个振荡器即可实现紧凑性。此外,通过设计无线系统,测量结果被传输到智能手机以监控VOC的浓度。我们使用了多个传感器来获取更多的指纹,以进行模式识别,以提高选择性,但将这些传感器与单个读出电路相连接,以最小化整个系统的占地面积。基于多路复用检测方案的基于CMUT的紧凑型传感器阵列是用于便携式VOC监测的有前途的传感器平台。

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