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A novel quartz crystal microbalance gas sensor based on porous film coatings. A high sensitivity porous polymethylmethacrylate) water vapor sensor

机译:一种基于多孔膜涂层的新型石英晶体微天平气体传感器。高灵敏度多孔聚甲基丙烯酸甲酯)水蒸气传感器

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摘要

We describe a novel and generally applicable approach for creating voids in films deposited on the surface of solid substrates. Such films are advantageous when a quartz crystal microbalance (QCM) is the basis of a sensor. We show that films with large void volumes produce more sensitive sensors than with the original film. Poly(methylmethacrylate) (PMMA) was used as the polymer layer deposited on a quartz crystal microbalance (QCM) to demonstrate our technique for the model system of water vapor analysis in flowing nitrogen gas. A film of pure PMMA on a QCM is a sensor for water vapor in a gas phase. A more sensitive sensor was created by dip coating QCM crystals into solutions containing mixtures of PMMA and poly(D.L-lactide) (PDLL) and then evaporating the solution films on the QCM crystals to form mixed polymer films of varying PDLL content. The PDLL was then removed from the mixed polymer films by exposure to a NaOH solution to form pure PMMA films having various void volumes; A leached PMMA film that originally contained 50% by weight PDLL had a 3.7 times larger QCM sensitivity for water vapor than a pure PMMA film.
机译:我们描述了一种新颖的且普遍适用的方法,该方法用于在沉积在固体基质表面上的膜中产生空隙。当石英晶体微量天平(QCM)是传感器的基础时,此类薄膜非常有利。我们显示,具有较大空隙体积的胶片比原始胶片产生的感光度更高。聚(甲基丙烯酸甲酯)(PMMA)被用作沉积在石英晶体微量天平(QCM)上的聚合物层,以展示我们用于流动氮气中水蒸气分析模型系统的技术。 QCM上的纯PMMA膜是用于气相水蒸气的传感器。通过将QCM晶体浸涂到包含PMMA和聚(D.L-丙交酯)(PDLL)的混合物的溶液中,然后将QCM晶体上的溶液膜蒸发以形成具有不同PDLL含量的混合聚合物膜,可以创建一个更加灵敏的传感器。然后通过暴露在NaOH溶液中从混合的聚合物薄膜中除去PDLL,以形成具有各种空隙体积的纯PMMA薄膜。最初含有50%重量的PDLL的浸出PMMA膜对水蒸气的QCM灵敏度是纯PMMA膜的3.7倍。

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