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Modifications of Poly(o-phenylenediamine) Permselective Layer on Pt-Ir for Biosensor Application in Neurochemical Monitoring

机译:用于生物传感器在神经化学监测中的Pt-Ir上的聚(邻苯二胺)选择性渗透层的修饰

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摘要

Reports that globular proteins could enhance the interference blocking ability of the PPD (poly(o-phenylenediamine) layer used as a permselective barrier in biosensor design, prompted this study where a variety of modifying agents were incorporated into PPD during its electrosynthesis on Pt-Ir electrodes. Trapped molecules, including fibrous proteins and β-cyclodextrin, altered the polymer/modifier composite selectivity by affecting the sensitivity to both H2O2 (signal molecule in many enzyme-based biosensors) and the archetypal interference species, ascorbic acid. A comparison of electrochemical properties of Pt and a Pt-Ir alloy suggests that the benefits of the latter, more rigid, metal can be exploited in PPD-based biosensor design without significant loss of backward compatibility with studies involving pure Pt.
机译:有报道称球状蛋白可以增强PPD(聚邻苯二胺)层在生物传感器设计中用作选择性渗透屏障的干扰阻断能力,促使这项研究在PPD-Ir上电合成PPD的过程中将多种修饰剂掺入PPD中。包括纤维蛋白和β-环糊精在内的被困分子通过影响对H2O2(许多基于酶的生物传感器中的信号分子)和原型干扰物抗坏血酸的敏感性,改变了聚合物/修饰剂的复合物选择性。 Pt和Pt-Ir合金的特性表明,后者(更坚硬的金属)的优点可以在基于PPD的生物传感器设计中得到利用,而不会对涉及纯Pt的研究产生向后兼容性的重大损失。

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