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The steady-state current at microcylinder electrodes modified by enzymes immobilized in conducting or non-conducting material

机译:固定在导电或非导电材料中的酶修饰的微圆柱电极上的稳态电流

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摘要

A diffusion-kinetic model is presented for an enzyme-modified microcylinder electrode, where the enzyme reaction generates an electro-active product. Simple, approximate expressions are derived for the steady-state current in cases where the enzyme is immobilized in a metallically conducting, or a non-conducting matrix. The model is also extended to the chemical sensor case, of a conducting polymer without enzyme. The model is used to analyze steady-state signals for glucose produced by Pt-coated carbon fibres, on which glucose oxidase has been entrapped in poly(1,2-diaminobenzene).
机译:提出了一种用于酶修饰的微圆柱电极的扩散动力学模型,其中酶反应产生电活性产物。如果将酶固定在金属导电或非导电基质中,则可以得出稳态电流的简单近似表达式。该模型还扩展到不含酶的导电聚合物的化学传感器外壳。该模型用于分析由Pt包覆的碳纤维产生的葡萄糖的稳态信号,在该信号上,葡萄糖氧化酶被困在聚(1,2-二氨基苯)中。

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