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在 TiO₂ 纳米管阵列电极上电沉积 Ag 纳米粒子用于过氧化氢传感。

Electrophoresis deposition of Ag nanoparticles on TiO₂ nanotube arrays electrode for hydrogen peroxide sensing.

机构信息

College of Chemistry, Sichuan University, 29 Wangjiang Road, Chengdu 610064, PR China.

出版信息

Talanta. 2013 Aug 15;112:129-35. doi: 10.1016/j.talanta.2013.03.015. Epub 2013 Mar 13.

Abstract

In this paper, a simple and green strategy, based on the electrophoresis deposition technology, was reported to prepare Ag nanoparticles (NPs) modified TiO2 nanotube arrays (NTs). The morphologies of AgNPs, TiO2NTs and AgNPs/TiO2NTs were characterized by transmission electron microscope (TEM) and scanning electron microscope (SEM). The results demonstrate that the surface of TiO2NTs was homogeneously decorated with AgNPs, of which the morphology could be easily controlled by the electrophoretic deposition (EPD) time. In order to investigate the co-effects of AgNPs and TiO2NTs on the catalysis of H2O2, the electrochemical performances of TiO2 NTs, AgNPs/Ti and AgNPs/TiO2NTs electrodes were investigated in this work. It is found that the response of AgNPs/TiO2NTs electrode to H2O2 was remarkably enhanced due to the co-effects of AgNPs and TiO2NTs. Therefore, it could be used to fabricate H2O2 sensor. The effects of conditions were investigated in detail, such as EPD time, the operating potential, etc.. Under the optimal experimental condition, the sensor had a quick response to H2O2 at -0.12 V with a high sensitivity (184.24 mA·M(-1)cm(-2)), wide linear range (0.75 μM-11.16 mM) and low detection limit (85.6 nM). In addition, the sensor also has good stability and excellent selectivity. The developed H2O2 sensor has been successfully applied to the detection of H2O2 in real samples. This work also demonstrated that the AgNPs/TiO2NTs has potential application in fabricating glucose sensor by immobilizing glucose oxidase onto the prepared electrode.

摘要

本文报道了一种基于电泳沉积技术的简单绿色策略,用于制备 Ag 纳米颗粒 (NPs) 修饰的 TiO2 纳米管阵列 (NTs)。通过透射电子显微镜 (TEM) 和扫描电子显微镜 (SEM) 对 AgNPs、TiO2NTs 和 AgNPs/TiO2NTs 的形貌进行了表征。结果表明,TiO2NTs 的表面均匀地修饰有 AgNPs,其形态可以通过电泳沉积 (EPD) 时间很容易地控制。为了研究 AgNPs 和 TiO2NTs 对 H2O2 催化的协同效应,本工作研究了 TiO2 NTs、AgNPs/Ti 和 AgNPs/TiO2NTs 电极的电化学性能。结果发现,由于 AgNPs 和 TiO2NTs 的协同效应,AgNPs/TiO2NTs 电极对 H2O2 的响应显著增强。因此,它可以用于制备 H2O2 传感器。详细研究了条件的影响,如 EPD 时间、工作电位等。在最佳实验条件下,传感器在-0.12 V 时对 H2O2 具有快速响应,灵敏度高(184.24 mA·M(-1)cm(-2)),线性范围宽(0.75 μM-11.16 mM),检测限低(85.6 nM)。此外,该传感器还具有良好的稳定性和优异的选择性。所开发的 H2O2 传感器已成功应用于实际样品中 H2O2 的检测。这项工作还表明,AgNPs/TiO2NTs 具有通过将葡萄糖氧化酶固定在制备的电极上制备葡萄糖传感器的潜在应用。

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