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Simultaneous quartz crystal microbalance impedance and electrochemical impedance measurements. Investigation into the degradation of thin polymer films

机译:同时测量石英晶体的微平衡阻抗和电化学阻抗。聚合物薄膜降解的研究

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The reproducible degradation of thin polymer films in the presence of an analyte or a reaction product of an analyte has potential applications in the development of highly sensitive, disposable biosensors. In this study, a novel combination of quartz crystal microbalance (QCM) and electrochemical impedance spectroscopy (EIS) has been developed to monitor the degradation of thin polymer films. Unlike a conventional QCM, the instrument described here allows rapid in situ measurement of quartz crystal impedance spectra. Simultaneously, classical electrochemical impedance spectra are measured in situ, affording the polymer film capacitance and bulk resistance. The combination of QCM impedance and classical EIS provides a wealth of information about the process of degradation of thin polymer films such as mass variation, swelling, delamination, viscoelasticity, and pore formation. Three different systems have been analyzed with this experimental setup; in two of the systems, polymer degradation was promoted by hydrolytic enzymes, and in the third one by a pH change. The results obtained show that the degradation of these three systems follows very different mechanisms. It is also underlined how the complementary information obtained by the two techniques allows a detailed description of the dissolution process. [References: 13]
机译:在分析物或分析物的反应产物存在下,聚合物薄膜的可再现降解具有潜在的应用,可用于开发高度灵敏的一次性生物传感器。在这项研究中,已经开发了石英晶体微量天平(QCM)和电化学阻抗谱(EIS)的新型组合来监测聚合物薄膜的降解。与传统的QCM不同,此处描述的仪器可以快速原位测量石英晶体的阻抗谱。同时,原位测量经典的电化学阻抗谱,从而提供聚合物膜电容和体电阻。 QCM阻抗和经典EIS的结合提供了有关聚合物薄膜降解过程的大量信息,例如质量变化,溶胀,分层,粘弹性和孔形成。使用此实验装置分析了三种不同的系统;在其中两个系统中,水解酶促进了聚合物的降解,而在第三个系统中,pH的变化促进了聚合物的降解。获得的结果表明,这三个系统的降解遵循非常不同的机制。还强调了通过两种技术获得的补充信息如何允许对溶解过程进行详细描述。 [参考:13]

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