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Ionic liquids: A new class of sensing materials for detection of organic vapors based on the use of a quartz crystal microbalance

机译:离子液体:使用石英晶体微量天平的新型传感材料,用于检测有机蒸气

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摘要

A QCM device employing ionic liquids as the sensing materials for organic vapors has been developed and evaluated. The sensing mechanism is based on the fact that the viscosity of the ionic liquid membrane decreases rapidly due to solubilization of analytes in the ionic liquids. This change in viscosity, which varies with the chemical species of the vapors and the types of ionic liquids, results in a frequency shift of the corresponding quartz crystal. The QCM sensor demonstrated a rapid response (average response time of less than 2 s) to organic vapors with an excellent reversibility because of the fast diffusion of analytes in ionic liquids. Furthermore, the ionic liquids, with zero vapor pressure and stable chemical properties, ensure a long-term shelf life for the sensor. [References: 41]
机译:已经开发并评估了使用离子液体作为有机蒸气感测材料的QCM设备。感测机制基于以下事实:由于分析物在离子液体中的溶解,离子液体膜的粘度迅速降低。粘度的这种变化随蒸汽的化学种类和离子液体的类型而变化,从而导致相应石英晶体的频移。由于分析物在离子液体中的快速扩散,QCM传感器表现出对有机蒸气的快速响应(平均响应时间少于2 s),并且具有出色的可逆性。此外,具有零蒸气压和稳定化学性质的离子液体可确保传感器的长期保存期限。 [参考:41]

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