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通过多壁碳纳米管的研磨固定修饰的预热玻碳电极上硫醇的催化氧化:在硫代胞嘧啶、L-半胱氨酸和谷胱甘肽的安培检测中的应用

Catalytic oxidation of thiols at preheated glassy carbon electrode modified with abrasive immobilization of multiwall carbon nanotubes: applications to amperometric detection of thiocytosine, l-cysteine and glutathione.

作者信息

Salimi Abdollah, Hallaj Rahman

机构信息

Department of Chemistry, Faculty of Science, Kurdistan University, P.O. Box 416, Sanandaj, Iran.

出版信息

Talanta. 2005 May 15;66(4):967-75. doi: 10.1016/j.talanta.2004.12.040.

Abstract

The performance of preheated glassy carbon electrode modified with carbon nanotubes is described. First glassy carbon electrode is heated for 5min at 50 degrees C, then abrasive immobilization of multiwall carbon nanotubes on a preheated glassy carbon electrode was achieved by gentle rubbing of electrode surface on a filter paper supporting carbon nanotubes. Carbon nanotubes (CNTs)-modified glassy carbon electrodes exhibit strong and stable electrocatalytic response toward thiols oxidation in wide pH range. These properties permit an important decrease in over voltage for the oxidation of thiocytosine, glutathione and l-cysteine, as well as a dramatic increase in the peak currents in comparison with bare glassy carbon electrode. Furthermore, the thiols amperometric response of the coated electrodes is extremely stable, with more than 95% of the initial activity after 30min stirring of 0.1mM thiols. The electrocatalytic behavior is further exploited as a sensitive detection scheme for thiols detection by hydrodynamic amperometry. The substantial decrease in the overvoltage of the thiols oxidation associated with a stable amperometric response and antifouling properties of nanotubes films allow the development of highly sensitive thiols sensor without using any redox mediator. Such ability of carbon nanotubes to promote the thiols electron transfer reaction, short response time (5s) and long-term stability, low detection limit, extended linear concentration range, high sensitivity suggest great promise for thiols amperometric sensors and detector for chromatographic analysis of thiol derivatives.

摘要

描述了用碳纳米管修饰的预热玻碳电极的性能。首先将玻碳电极在50℃下加热5分钟,然后通过在支撑碳纳米管的滤纸上轻轻摩擦电极表面,将多壁碳纳米管磨蚀固定在预热的玻碳电极上。碳纳米管(CNTs)修饰的玻碳电极在较宽的pH范围内对硫醇氧化表现出强烈而稳定的电催化响应。与裸玻碳电极相比,这些特性使得硫代胞嘧啶、谷胱甘肽和L-半胱氨酸氧化的过电压显著降低,同时峰值电流大幅增加。此外,涂覆电极的硫醇安培响应极其稳定,在0.1mM硫醇搅拌30分钟后,初始活性保留超过95%。通过流体动力学安培法,将这种电催化行为进一步用作硫醇检测的灵敏检测方案。硫醇氧化过电压的大幅降低,以及纳米管薄膜稳定的安培响应和防污性能,使得无需使用任何氧化还原介质就能开发出高灵敏度的硫醇传感器。碳纳米管促进硫醇电子转移反应的能力、短响应时间(5秒)、长期稳定性、低检测限、宽线性浓度范围和高灵敏度,表明其在硫醇安培传感器以及硫醇衍生物色谱分析检测器方面具有巨大潜力。

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