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Effects of Electric Potential Treatment of a Chromium Hexacyanoferrate Modified Biosensor Based on PQQ-Dependent Glucose Dehydrogenase

机译:基于PQQ依赖性葡萄糖脱氢酶的六价高铁酸铬修饰生物传感器的电势处理效果

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摘要

A novel potential treatment technique applied to a glucose biosensor that is based on pyrroloquinoline quinone (PQQ)-dependent glucose dehydrogenase (GDH) and chromium hexacyanoferrate (CrHCF) incorporated into a platinum (Pt) electrode was demonstrated. CrHCF, serving as a mediator, was electrochemically deposited on the Pt electrode as ascertained by CV, SEM, FTIR and XPS measurements. The potential treatment of CrHCF, which converts Fe(II) to Fe(III), enables the glucose detection. The amperometric measurement linearity of the biosensor was up to 20 mM (R = 0.9923), and the detection sensitivity was 199.94 nA/mM per cm2. More importantly, this biosensor remained stable for >270 days.
机译:对吡咯并喹啉醌(PQQ)依赖性葡萄糖脱氢酶(GDH)和六氰合铁酸铬(CrHCF)掺入铂(Pt)电极中的一种新型潜在治疗技术进行了演示。通过CV,SEM,FTIR和XPS测量确定,作为介质的CrHCF被电化学沉积在Pt电极上。 CrHCF的潜在治疗方法是将Fe(II)转化为Fe(III),从而实现葡萄糖检测。生物传感器的安培测量线性度高达20 mM(R = 0.9923),检测灵敏度为199.94 nA / mM / cm2。更重要的是,该生物传感器在超过270天的时间内保持稳定。

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