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Study of zeolite influence on analytical characteristics of urea biosensor based on ion-selective field-effect transistors

机译:基于离子选择场效应晶体管的沸石对尿素生物传感器分析特性的影响研究

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摘要

A possibility of the creation of potentiometric biosensor by adsorption of enzyme urease on zeolite was investigated. Several variants of zeolites (nano beta, calcinated nano beta, silicalite, and nano L) were chosen for experiments. The surface of pH-sensitive field-effect transistors was modified with particles of zeolites, and then the enzyme was adsorbed. As a control, we used the method of enzyme immobilization in glutaraldehyde vapour (without zeolites). It was shown that all used zeolites can serve as adsorbents (with different effectiveness). The biosensors obtained by urease adsorption on zeolites were characterized by good analytical parameters (signal reproducibility, linear range, detection limit and the minimal drift factor of a baseline). In this work, it was shown that modification of the surface of pH-sensitive field-effect transistors with zeolites can improve some characteristics of biosensors.
机译:研究了通过将脲酶酶吸附到沸石上来创建电位生物传感器的可能性。选择了几种沸石的变体(纳米β,煅烧的纳米β,硅沸石和纳米L)进行实验。用沸石颗粒修饰pH敏感型场效应晶体管的表面,然后吸附酶。作为对照,我们使用了将酶固定在戊二醛蒸气中的方法(不含沸石)。结果表明,所有用过的沸石都可以用作吸附剂(具有不同的功效)。通过脲酶吸附在沸石上获得的生物传感器具有良好的分析参数(信号重现性,线性范围,检测限和基线的最小漂移因子)。在这项工作中,表明用沸石修饰pH敏感的场效应晶体管的表面可以改善生物传感器的某些特性。

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