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Construction of Reagentless Biosensor Based on Self-assembly and Electrodeposition for Determination of Hydrogen Peroxide

机译:基于自组装和电沉积法测定过氧化氢的无可霉菌生物传感器的构建

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A general methodology to prepare reagentless biosensor was developed based on self-assembly and electrodeposition. Redox active inorganic multilayers consisting of copper hexacyanoferrate (CuHCF) multilayers were formed by successive self-assembly. A simple and controllable electrodeposition approach was established for one-step fabrication of chitosan-enzyme layer on CuHCF modified electrode. Horseradish peroxidase was selected as the model enzyme. With CuHCF as the electroactive mediator, the developed reagentless biosensor exhibited a fast amperometric response for the determination of hydrogen peroxide (H_2O_2). The linear response ranged from 1.4 × 10~(-5) to 2.0 × 10~(-4) M with a detection limit of 1.2 × 10~(-6) M. The biosensor exhibited high reproducibility and long-time storage stability. The proposed methodology could serve as a versatile platform for fabrication of electrochemical biosensors.
机译:基于自组装和电沉积,开发了一种制备无试验生物传感器的一般方法。由连续的自组装形成由六氰基甲甲酸酯(CUHCF)多层组成的氧化还原活性无机多层。建立了一种简单可控的电沉积方法,用于在CuHCF改性电极上的壳聚糖酶层的一步制造。选择辣根过氧化物酶作为模型酶。用CuHCF作为电活性介体,发发的无力生物传感器表现出用于测定过氧化氢(H_2O_2)的快速测定响应。线性响应范围为1.4×10〜(-5)至2.0×10〜(-4)m,检测限为1.2×10〜(-6)米。生物传感器表现出高再现性和长时间的储存稳定性。所提出的方法可以用作制备电化学生物传感器的多功能平台。

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