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Chemically Selective Coated Quartz Crystal Microbalance (QCM) Array for Detection of Volatile Organic Chemical

机译:化学选择性涂层石英晶体微天平(QCM)阵列,用于检测挥发性有机化学物质

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Liquid flow cells have been fabricated to prepare an array of QCMs operating simultaneously for detection and identification of VOCs in water. Two signals, a frequency response and a damping voltage response, were obtained per resonator. A blank QCM was used as a reference to account for changes in liquid density and viscosity. Nine different polymer coatings applied using a spin coat technique have been examined for VOC response under liquid flow conditions. A matrix of three classes of VOCs were examined for each coating with four chemicals in each class. The three classes of VOCs are polar, nonpolar and chlorinated. A pattern rcognition technique, called visually empirical region of influence (VERI). was used to cluster the responses in n-dimensional space. Chemicals within a class varying by only one methyl group (e.g, toluene and xylene) are easily discriminated using only two different coatings with three different QCM responses. All chemicals were easily separated and detected with a total of 5 films and 6 responses with>99
机译:已制造出液体流通池,以准备同时运行的QCM阵列,以检测和识别水中的VOC。每个谐振器获得两个信号,即频率响应和阻尼电压响应。使用空白QCM作为参考,以说明液体密度和粘度的变化。已经检查了使用旋涂技术涂覆的九种不同的聚合物涂料在液体流动条件下的VOC响应。对于每种涂料,使用每种化学品中的四种化学物质检查了三类VOC的基质。 VOC的三类是极性,非极性和氯化的。一种模式识别技术,称为视觉经验影响范围(VERI)。被用来在n维空间中对响应进行聚类。仅使用具有三种不同QCM响应的两种不同涂层,就可以轻松区分仅变化一个甲基的一类化学药品(例如,甲苯和二甲苯)。所有化学物质均易于分离和检测,共有5层膜和6个响应(> 99)

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