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Nano-assembled thin film gas sensors. IV. Mass-sensitive monitoring of humidity using quartz crystal microbalance (QCM) electrodes

机译:纳米组装的薄膜气体传感器。 IV。使用石英晶体微天平(QCM)电极对湿度进行质量敏感的监控

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摘要

Nano-assembled thin films prepared by a layer-by-layer approach on QCM resonators were used as sensitive elements for monitoring relative humidity. Different types of films, polymer-based (PDDA/PSS)n film and porphyrin-based (PDDA/TSPP)n and (PDDA/MnTSPP)n films (where n = 5, 10, and 15), showed linear responses to relative humidity changes in the range of 4-94%. Increase of the number of bilayers deposited on the QCM electrode enhanced the sensitivity to relative humidity. The porphyrin-based films showed ca. 4.5 times higher sensitivity towards relative humidity than the polymer-based films, owing to presence of the higher number of free sulfonic acid groups. Incorporation of the metal ion into the porphyrin pyrrole ring was not significant in sensitivity. However, all films showed a good reversibility to the stepwise changes of relative humidity and the response and recovery times (tg0) were very fast within 15 s.
机译:在QCM谐振器上通过逐层方法制备的纳米组装薄膜被用作监测相对湿度的敏感元件。不同类型的薄膜,聚合物基(PDDA / PSS)n薄膜和卟啉基(PDDA / TSPP)n和(PDDA / MnTSPP)n薄膜(n = 5、10和15)显示出相对于线性的线性响应。湿度变化范围为4-94%。沉积在QCM电极上的双层数量的增加增强了对相对湿度的敏感性。卟啉基膜显示约。由于存在较高数量的游离磺酸基,因此对相对湿度的敏感性是聚合物基薄膜的4.5倍。金属离子结合到卟啉吡咯环中的敏感性不显着。但是,所有膜都显示出相对湿度逐步变化的良好可逆性,并且响应和恢复时间(tg0)在15 s内非常快。

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