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基于可省略聚合物基底制备的纳米多孔 ZnO 薄膜的一次性尿素生物传感器。

Disposable urea biosensor based on nanoporous ZnO film fabricated from omissible polymeric substrate.

机构信息

Thin Layer and Nanotechnology Laboratory, Institute of Chemical Technology, Iranian Research Organization for Science and Technology (IROST), P.O. Box 33535-111, Tehran, Iran.

Thin Layer and Nanotechnology Laboratory, Institute of Chemical Technology, Iranian Research Organization for Science and Technology (IROST), P.O. Box 33535-111, Tehran, Iran.

出版信息

Mater Sci Eng C Mater Biol Appl. 2015 Dec 1;57:387-96. doi: 10.1016/j.msec.2015.08.004. Epub 2015 Aug 11.

Abstract

In the present study, a facile and simple fabrication method of a semiconductor based urea biosensor was reported via three steps: (i) producing a ZnO-PVA composite film by means of a polymer assisted electrodeposition of zinc oxide (ZnO) on the F-doped SnO2 conducting glass (FTO) using water soluble polyvinyl alcohol (PVA), (ii) obtaining a nanoporous ZnO film by PVA omission via a subsequent post-treatment by annealing of the ZnO-PVA film, and (iii) preparation of a FTO/ZnO/Urs biosensor by exploiting a nanoporous ZnO film as an efficient and excellent platform area for electrostatic immobilization of urease enzyme (Urs) which was forced by the difference in their isoelectric point (IEP). The characterization techniques focused on the analysis of the ZnO-PVA film surfaces before and after annealing, which had a prominent effect on the porosity of the prepared ZnO film. The surface characterization of the nanostructured ZnO film by a field emission-scanning electron microscopy (FE-SEM), exhibited a film surface area as an effective bio-sensing matrix for enzyme immobilization. The structural characterization and monitoring of the biosensor fabrication was performed using UV-Vis, Fourier Transform Infrared (FT-IR), Raman Spectroscopy, Thermogravimetric Analysis (TGA), Cyclic Voltammetry (CV), and Electrochemical Impedance Spectroscopy (EIS) techniques. The impedimetric results of the FTO/ZnO/Urs biosensor showed a high sensitivity for urea detection within 8.0-110.0mg dL(-1) with the limit of detection as 5.0mg dL(-1).

摘要

在本研究中,通过三个步骤报道了一种基于半导体的尿素生物传感器的简单制造方法:(i)通过在 F 掺杂的 SnO2 导电玻璃(FTO)上用水溶性聚乙烯醇(PVA)辅助电沉积氧化锌(ZnO)来制备 ZnO-PVA 复合膜,(ii)通过随后对 ZnO-PVA 膜进行退火处理来除去 PVA 以获得多孔 ZnO 膜,以及(iii)通过利用多孔 ZnO 膜作为静电固定脲酶(Urs)的有效且极好的平台区域来制备 FTO/ZnO/Urs 生物传感器,这是由于其等电点(IEP)的差异所致。表征技术集中在分析退火前后的 ZnO-PVA 膜表面,这对制备的 ZnO 膜的多孔性有显著影响。场发射扫描电子显微镜(FE-SEM)对纳米结构 ZnO 膜的表面特性进行了分析,显示出作为酶固定有效生物传感基质的膜表面积。使用紫外-可见分光光度计、傅里叶变换红外(FT-IR)、拉曼光谱、热重分析(TGA)、循环伏安法(CV)和电化学阻抗谱(EIS)技术对生物传感器的结构进行了表征和监测。FTO/ZnO/Urs 生物传感器的阻抗结果显示,在 8.0-110.0mg dL(-1) 范围内对尿素检测具有高灵敏度,检测限为 5.0mg dL(-1)。

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