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Hydrogel coatings and their employment in a Quartz Crystal Microbalance ion sensor

机译:水凝胶涂层及其在石英晶体微天平离子传感器中的应用

摘要

A method to attach hydrophilic and/or ionogenic coatings to metallic surfaces robustly. Important applications for the invention extend to sensor types, various biomedical devices, and additional technologies requiring metal coatings with specified properties, such as sensors that employ the Quartz Crystal Microbalance (QCM) principle. This is a method to produce an adherent hydrogel against a metal surface by gelling a liquid mixture of components. The implementation of the invention for QCM ion sensors employs poly(allylamine) (PAH) hydrogels. The reaction of PAH with N-Acetylhomocysteine thiolactone (AHTL) (Fluda) in water under basic conditions produces thiol groups. This reaction removes ion exchange functionality and permits robust attachment of the hydrogel to the QCM's gold electrode. The PAH concentration in the aqueous starting mixture is between 12 and 25 weight percent, the AHTL concentration is between 5 and 25 mole percent of PAH repeat units, and the DadMac concentration is between 10 and 15 mole percent of PAH repeat units. Also, between 1 and 2 equivalents of base (sodium, hydroxide, NaOH) are present per equivalent of PAH repeat units.
机译:一种将亲水和/或离子涂层牢固地附着到金属表面的方法。本发明的重要应用扩展到传感器类型,各种生物医学设备以及需要具有特定特性的金属涂层的附加技术,例如采用石英晶体微天平(QCM)原理的传感器。这是通过使组分的液体混合物胶凝而在金属表面上产生粘附的水凝胶的方法。用于QCM离子传感器的本发明的实施采用聚(烯丙胺)(PAH)水凝胶。在碱性条件下,PAH与N-乙酰高半胱氨酸硫代内酯(AHTL)(Fluda)在水中的反应产生巯基。该反应消除了离子交换功能,并使水凝胶牢固地附着在QCM的金电极上。水性起始混合物中的PAH浓度为12至25重量%,AHTL浓度为PAH重复单元的5至25摩尔%,DadMac浓度为PAH重复单元的10至15摩尔%。同样,每当量的PAH重复单元存在1-2当量的碱(钠,氢氧化物,NaOH)。

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