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首页> 外文期刊>Scientific reports. >Detection of Volatile Organic Compounds by Self-assembled Monolayer Coated Sensor Array with Concentration-independent Fingerprints
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Detection of Volatile Organic Compounds by Self-assembled Monolayer Coated Sensor Array with Concentration-independent Fingerprints

机译:用浓度无关的指纹自组装单层涂层传感器阵列检测挥发性有机化合物

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In this paper, we have modeled and analyzed affinities and kinetics of volatile organic compounds (VOCs) adsorption (and desorption) on various surface chemical groups using multiple self-assembled monolayers (SAMs) functionalized film bulk acoustic resonator (FBAR) array. The high-frequency and micro-scale resonator provides improved sensitivity in the detections of VOCs at trace levels. With the study of affinities and kinetics, three concentration-independent intrinsic parameters (monolayer adsorption capacity, adsorption energy constant and desorption rate) of gas-surface interactions are obtained to contribute to a multi-parameter fingerprint library of VOC analytes. Effects of functional group's properties on gas-surface interactions are also discussed. The proposed sensor array with concentration-independent fingerprint library shows potential as a portable electronic nose (e-nose) system for VOCs discrimination and gas-sensitive materials selections.
机译:在本文中,我们使用多个自组装单层(SAMS)官能化薄膜堆积器(FBAR)阵列在各种表面化学基团上进行建模和分析挥发性有机化合物(VOCS)吸附(和解吸)的相与性和动力学。高频和微级谐振器在跟踪水平的VOC检测中提供了改善的灵敏度。通过研究亲和力和动力学,获得气体表面相互作用的三种浓度无关的内在参数(单层吸附能力,吸附能量恒定和解吸速率,以有助于VOC分析物的多参数指纹文库。还讨论了官能团对气体表面相互作用的影响。具有浓度无关的指纹库的所提出的传感器阵列显示了用于VOCS辨别和气敏材料选择的便携式电子鼻(E-鼻子)系统。

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