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Cholesterol Biosensor Based On Nanoporous Zinc Oxide Modified Electrodes

机译:基于纳米氧化锌改性电极的胆固醇生物传感器

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Nanostructured ZnO modified electrodes have been fabricated by co-electrodeposition with eosin Y onto Fdoped SnO_2 (FM) coated glass, and their application for cholesterol biosensor was studied. For cholesterol application, cholesterol oxidase (ChOx) was immobilized onto the ZnO/FTO electrode via physical adsorption. Cyclic voltammetric measurements showed that the ChOx/ZnO/FTO is sensitive to cholesterol and the optimal solution pH for the ChOx/ZnO/FTO electrode for detecting cholesterol was 6.7. Besides, the redox peak current densities are proportional to the square root of scan rate, or v~(1/2), indicating the electron-transfer process is diffusion limited. The sensitivity, linear detection range, and the limit of detection for the ChOx/ZnO/FTO electrode are 3.01 mAicm~2 M~(-1), 1.1-4.83 mM, and 20 μM, respectively.
机译:通过与eosin y的共电沉积在FDOPED SnO_2(FM)涂覆的玻璃上,通过将纳米结构ZnO改性电极进行了制造,研究了它们对胆固醇生物传感器的应用。对于胆固醇施用,通过物理吸附将胆固醇氧化酶(CHOx)固定在ZnO / FTO电极上。循环伏安测量表明,CHOx / ZnO / FTO对胆固醇敏感,并且用于检测胆固醇的CHOx / ZnO / FTO电极的最佳溶液pH为6.7。此外,氧化还原峰值电流密度与扫描速率的平方根成比例,或者V〜(1/2),指示电子转移过程是扩散有限的。 CHOx / ZnO / FTO电极的灵敏度,线性检测范围和检测极限分别为3.01mAicm〜2m〜(-1),1.1-4.83mm和20μm。

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