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A Langasite Crystal Microbalance Coated with Graphene Oxide-Platinum Nanocomposite as a Volatile Organic Compound Sensor: Detection and Discrimination Characteristics

机译:氧化石墨-纳米铂复合作为挥发性有机化合物传感器的蓝宝石晶体微量天平:检测和鉴别特性

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摘要

We propose a novel langasite crystal microbalance (LCM) sensor with a graphene-based sensing medium to detect and discriminate volatile organic compounds (VOCs) at room temperature. A thin film of graphene oxide embedded with Pt nanostructures (GO-Pt nanocomposite) was deposited on the electrode surface of the LCM, a thickness-shear acoustic wave resonator. Ethyl acetate, acetic acid, and ethanol were chosen as typical VOCs for this study. Sensitivity and selectivity of coated LCM were investigated for different concentrations of the VOCs by analysing the resonant properties of the sensor. When exposed to VOCs, a negative shift in series resonance frequency was observed due to the mass loading of VOC molecules. Simultaneously, changes in equivalent resistance and parallel resonance frequency of the sensor were also observed due to the interaction of VOCs with charge carriers on the GO-Pt nanocomposite film surface. This dual measurement of both series and parallel resonance frequencies allowed for detection and discrimination of VOCs. Moreover, the high thermal stability of langasite makes the proposed sensor suitable even for harsh environmental conditions.
机译:我们提出了一种新型的基于石墨烯的传感介质的蓝宝石晶体微量天平(LCM)传感器,以检测和区分室温下的挥发性有机化合物(VOC)。嵌入有Pt纳米结构(GO-Pt纳米复合材料)的氧化石墨烯薄膜沉积在LCM(厚度-剪切声波谐振器)的电极表面上。选择乙酸乙酯,乙酸和乙醇作为该研究的典型VOC。通过分析传感器的共振特性,研究了涂层LCM对VOC浓度不同的敏感性和选择性。当暴露于VOCs时,由于VOC分子的质量负载,导致串联共振频率出现负向偏移。同时,由于VOC与GO-Pt纳米复合膜表面上的电荷载体的相互作用,还观察到传感器的等效电阻和并联谐振频率的变化。串联和并联谐振频率的这种双重测量可以检测和识别VOC。此外,硅酸铝的高热稳定性使得所提出的传感器甚至适用于恶劣的环境条件。

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