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FLOW INJECTION BASED RENEWABLE ELECTROCHEMICAL SENSOR SYSTEM

机译:基于流动注射的可再生电化学传感器系统

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摘要

A novel class of electrochemical sensors is proposed utilizing electrically conducting beads to form a disposable electrode as well as nonconducting beads to form renewable layers of immobilized enzymes. The concept aimed to prevent fouling, is tested on an amperometric sensor coupled to nonconducting beads with different immobilized oxidases: galactose, lactate, alcohol, or glucose oxidase, the latter two being used to determine alcohol and glucose, respectively, in samples of beer and wine, Glucose oxidase was also immobilized on conducting glassy carbon particles to explore the performance of a biosensor where both enzyme and electrode can be automatically renewed in less than I min, The results confirm that the concept of a flow injection renewable electrochemical sensor (FI-RES) is practical, It provides a novel approach to biosensing, to comparing enzyme activity, to studying enzyme immobilization on different supports, and to voltammetry in general.
机译:提出了一种新型的电化学传感器,其利用导电珠子形成一次性电极以及非导电珠子形成固定化酶的可再生层。旨在防止结垢的概念在安培传感器上进行了测试,该传感器与具有不同固定氧化酶的半导电珠耦合:半乳糖,乳酸,乙醇或葡萄糖氧化酶,后两种分别用于测定啤酒和啤酒样品中的酒精和葡萄糖。葡萄酒中,葡萄糖氧化酶也固定在导电的玻璃碳颗粒上,以探索生物传感器的性能,其中酶和电极均可在不到1分钟的时间内自动更新。结果证实了流动注射可再生电化学传感器(FI- RES)是实用的,它为生物传感,比较酶活性,研究酶在不同支持物上的固定以及伏安法提供了一种新颖的方法。

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