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基于金纳米粒子修饰的二氧化钛纳米管阵列的铬(VI)的灵敏和选择性电化学检测。

Sensitive and selective electrochemical detection of chromium(VI) based on gold nanoparticle-decorated titania nanotube arrays.

机构信息

Department of Chemistry, Lakehead University, 955 Oliver Road, Thunder Bay, ON P7B 5E1, Canada.

出版信息

Analyst. 2014 Jan 7;139(1):235-41. doi: 10.1039/c3an01614e. Epub 2013 Nov 4.

Abstract

Owing to the severe toxicity and mobility of Cr(VI) in biological and environmental systems, it is of great importance to develop convenient and reliable methods for its detection. Here we report on a facile and effective electrochemical technique for monitoring Cr(VI) concentrations based on the utilization of Au nanoparticle-decorated titania nanotubes (TiO2NTs) grown on a titanium substrate. It was found that the electrochemical reduction of Cr(VI) at the Ti/TiO2NT/Au electrode exhibited an almost 23 fold improvement in activity as compared to a polycrystalline gold electrode, due to its nanoparticle/nanotubular heterojunction infrastructure. As a result, the Ti/TiO2NT/Au electrode demonstrated a wide linear concentration range from 0.10 μM to 105 μM, a low detection limit of 0.03 μM, and a high sensitivity of 6.91 μA μM(-1) Cr(VI) via amperometry, satisfying the detection requirements of the World Health Organization (WHO). Moreover, the Ti/TiO2NT/Au electrode exhibited good resistance against interference from coexisting Cr(III) and other metal ions, and excellent recovery for Cr(VI) detection in both tap and lake water samples. These attributes suggest that this hybrid sensor has strong potential in applications for the selective detection of Cr(VI).

摘要

由于 Cr(VI) 在生物和环境系统中的毒性和迁移性很强,因此开发方便、可靠的 Cr(VI)检测方法非常重要。在这里,我们报告了一种基于在钛基底上生长的金纳米粒子修饰的二氧化钛纳米管(TiO2NTs)的简便有效的电化学技术,用于监测 Cr(VI)浓度。研究发现,与多晶金电极相比,Ti/TiO2NT/Au 电极上 Cr(VI)的电化学还原活性提高了近 23 倍,这是由于其纳米粒子/纳米管异质结结构所致。结果表明,Ti/TiO2NT/Au 电极通过安培法表现出从 0.10 μM 到 105 μM 的宽线性浓度范围、0.03 μM 的低检测限和 6.91 μA μM(-1) Cr(VI)的高灵敏度,满足世界卫生组织(WHO)的检测要求。此外,Ti/TiO2NT/Au 电极对共存的 Cr(III)和其他金属离子的干扰具有良好的抵抗力,并且在自来水和湖水样品中对 Cr(VI)检测具有出色的回收率。这些特性表明,这种混合传感器在选择性检测 Cr(VI)方面具有很大的应用潜力。

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