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Solution Process Synthesis of High Aspect Ratio ZnO Nanorods on Electrode Surface for Sensitive Electrochemical Detection of Uric Acid

机译:电极表面高纵横比ZnO纳米棒的固溶过程合成用于尿酸的灵敏电化学检测

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摘要

This study demonstrates a highly stable, selective and sensitive uric acid (UA) biosensor based on high aspect ratio zinc oxide nanorods (ZNRs) vertical grown on electrode surface via a simple one-step low temperature solution route. Uricase enzyme was immobilized on the ZNRs followed by Nafion covering to fabricate UA sensing electrodes (Nafion/Uricase-ZNRs/Ag). The fabricated electrodes showed enhanced performance with attractive analytical response, such as a high sensitivity of 239.67 μA cm−2 mM−1 in wide-linear range (0.01–4.56 mM), rapid response time (~3 s), low detection limit (5 nM), and low value of apparent Michaelis-Menten constant (Kmapp, 0.025 mM). In addition, selectivity, reproducibility and long-term storage stability of biosensor was also demonstrated. These results can be attributed to the high aspect ratio of vertically grown ZNRs which provides high surface area leading to enhanced enzyme immobilization, high electrocatalytic activity, and direct electron transfer during electrochemical detection of UA. We expect that this biosensor platform will be advantageous to fabricate ultrasensitive, robust, low-cost sensing device for numerous analyte detection.
机译:这项研究证明了一种高稳定,选择性和灵敏的尿酸(UA)生物传感器,该传感器基于通过简单的一步式低温溶液途径在电极表面垂直生长的高长宽比的氧化锌纳米棒(ZNR)。将尿酸酶固定在ZNRs上,然后用Nafion覆盖以制造UA传感电极(Nafion / Uricase-ZNRs / Ag)。制成的电极表现出增强的性能,并具有吸引人的分析响应,例如在宽线性范围(0.01–4.56 mM)中的高灵敏度239.67μAcm −2 mM −1 ,快速响应时间(〜3 s),低检测限(5 nM)和低表观Michaelis-Menten常数(Km app ,0.025 mM)。此外,还展示了生物传感器的选择性,可重复性和长期存储稳定性。这些结果可以归因于垂直生长的ZNR的高长宽比,该纵横比提供了高表面积,从而在UA的电化学检测过程中增强了酶的固定性,提高了电催化活性并实现了直接电子转移。我们希望该生物传感器平台将有利于制造用于多种分析物检测的超灵敏,坚固,低成本的传感设备。

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