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Quartz microbalance studies of solvent and ion transport in thin polymer films in sensor applications of the QCM

机译:石英微天平研究QCM传感器应用中聚合物薄膜中溶剂和离子的迁移

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摘要

The quartz crystal microbalance (QCM) has been applied to the study of mass changes within thin polymer films immobilized on the surface of the QCM. These studies have been in two contexts: (1) the determination of compositional changes within such thin films which have been subjected to electrochemical oxidation or reduction (i.e. injection or removal of charge), which necessarily causes ion transport to maintain electroneutrality and frequently causes solvent transport as well, and (2) the development of sensor elements capable of transducing chemical events, such as binding of an analyte to a host molecule immobilized within the thin film, into electrical signals. The focus is on the fundamental chemical and physical processes which can occur in such situations and their influence on the resonant frequency and conductance spectrum of the QCM/thin-film composite resonator. Also discussed is the use of the conductance spectrum as a diagnostic tool for the evaluation of changes in the viscoelastic properties of the thin film which might be induced, for example, by solvent incorporation into the film.
机译:石英晶体微量天平(QCM)已用于研究固定在QCM表面的聚合物薄膜内的质量变化。这些研究是在两种情况下进行的:(1)确定已进行电化学氧化或还原(即注入或去除电荷)的薄膜中的组成变化,这必然导致离子迁移以保持电子中性,并经常导致溶剂以及运输;以及(2)能够将化学事件转化为电信号的传感器元件的开发,例如将分析物与固定在薄膜内的宿主分子结合。重点是在这种情况下可能发生的基本化学和物理过程,以及它们对QCM /薄膜复合谐振器的谐振频率和电导谱的影响。还讨论了将电导谱用作诊断工具,用于评估薄膜的粘弹性特性的变化,这种变化可能是由于溶剂掺入薄膜引起的。

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