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首页> 外文期刊>Sensors and Actuators. B, Chemical >Syndiotactic polystyrene thin film as sensitive layer for an optoelectronic chemical sensing device
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Syndiotactic polystyrene thin film as sensitive layer for an optoelectronic chemical sensing device

机译:间规聚苯乙烯薄膜作为光电化学传感设备的敏感层

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In this work the performance of an optoelectronic sensor system able to measure the concentration of organic analytes, in aqueous environment was analyzed. Syndiotactic polystyrene (sPS) in the nanoporous crystalline δ form was here used as sensitive polymeric layer due to its high sorption properties towards chlorinated and aromatic compounds. In particular, a thin semi-crystalline sPS film with crystalline nanoporous δ form was cast on the cleaved end of a standard fiber optic and measurements of reflectivity as the analyte was sorbed by the polymer were carried out allowing on-line detection of even very low concentrations (in the range of few ppm) of chloroform and toluene in water. The refractometer performance was compared with that of a classical resonant quartz-crystal microbalance sensor (QCM), using the same polymer as sensing element.
机译:在这项工作中,分析了在水环境中能够测量有机分析物浓度的光电传感器系统的性能。由于其对氯化物和芳族化合物的高吸附性能,因此将纳米多孔晶体δ形式的间规聚苯乙烯(sPS)用作敏感的聚合物层。特别是,将具有结晶纳米多孔δ形式的半结晶sPS薄膜浇铸在标准光纤的开裂端上,并进行分析物被聚合物吸收时的反射率测量,从而可以在线检测甚至很低的水中氯仿和甲苯的浓度(几ppm范围内)。使用相同的聚合物作为传感元件,将折光仪的性能与经典谐振石英晶体微天平传感器(QCM)的性能进行了比较。

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