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通过 N 掺杂在 ZnO 薄膜中诱导出电催化功能,实现第三代尿酸生物传感器。

Inducing electrocatalytic functionality in ZnO thin film by N doping to realize a third generation uric acid biosensor.

机构信息

Department of Physics and Astrophysics, University of Delhi, Delhi 110007, India.

Department of Physics, Miranda House, University of Delhi, Delhi 110007, India.

出版信息

Biosens Bioelectron. 2014 May 15;55:57-65. doi: 10.1016/j.bios.2013.11.015. Epub 2013 Dec 1.

DOI:10.1016/j.bios.2013.11.015
PMID:24362079
Abstract

A third generation uric acid biosensor has been developed by exploiting the electrocatalytic functionality of nitrogen (N) doped zinc oxide (ZnO:N) thin film matrix deposited using pulsed laser deposition technique. The electrochemistry of ZnO:N thin film based electrode is investigated by using electrochemical impedance spectroscopy and cyclic voltammetry. The obtained results demonstrate that nitrogen doping in ZnO matrix offers a striking electrocatalytic activity to the immobilized uricase towards the oxidation of analyte (uric acid) and promotes the direct transfer of electrons from active sites of enzyme onto the electrode without any mediator. In contrast to pure ZnO, ZnO:N (8% N) thin film based uric acid biosensor gives a high sensitivity of about 1.38 mA/mM in the absence of mediator. Moreover, ZnO:N derived bio-electrode exhibits excellent selectivity and outstanding analytical stability and reproducibility, which enables a reliable and sensitive determination of uric acid in the serum. The ZnO:N thin film based biosensor exhibits a linear sensing response in the range from 0 to 1.0mM of uric acid concentration and the apparent Michaelis-Menten kinetic parameter (Km) is estimated to be about 0.13 mM which indicates the high affinity of the prepared bio-electrode towards uric acid. The obtained results are encouraging and indicate that the ZnO:N thin film matrix offers a new and promising platform for the development of novel third generation biosensors without using any mediator.

摘要

第三代尿酸生物传感器是通过利用氮(N)掺杂氧化锌(ZnO:N)薄膜基质的电催化功能开发的,该薄膜基质是使用脉冲激光沉积技术沉积的。通过电化学阻抗谱和循环伏安法研究了基于 ZnO:N 薄膜的电极的电化学性质。得到的结果表明,氮掺杂在 ZnO 基质中为固定化尿酸酶对分析物(尿酸)的氧化提供了显著的电催化活性,并促进了电子从酶的活性位点直接转移到电极上,而无需任何介体。与纯 ZnO 相比,基于 ZnO:N(8%N)薄膜的尿酸生物传感器在没有介体的情况下具有约 1.38 mA/mM 的高灵敏度。此外,基于 ZnO:N 的生物电极表现出出色的选择性和卓越的分析稳定性和重现性,能够可靠且灵敏地测定血清中的尿酸。基于 ZnO:N 薄膜的生物传感器在尿酸浓度为 0 至 1.0mM 的范围内表现出线性传感响应,并且表观米氏动力学参数(Km)估计约为 0.13mM,这表明所制备的生物电极对尿酸具有高亲和力。得到的结果令人鼓舞,表明 ZnO:N 薄膜基质为开发新型第三代生物传感器提供了一个新的有前途的平台,而无需使用任何介体。

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