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采用两步化学镀/化学气相沉积法制备的碳纳米管修饰碳纤维微电极的电化学行为

The Electrochemical Behavior of Carbon Fiber Microelectrodes Modified with Carbon Nanotubes Using a Two-Step Electroless Plating/Chemical Vapor Deposition Process.

作者信息

Lu Longsheng, Liang Linsheng, Teh Kwok Siong, Xie Yingxi, Wan Zhenping, Tang Yong

机构信息

School of Mechanical & Automotive Engineering, South China University of Technology, 381# Wushan Road, Guangzhou 510641, China.

Department of Mechanical Engineering, University of California, Berkeley, CA 94720, USA.

出版信息

Sensors (Basel). 2017 Mar 30;17(4):725. doi: 10.3390/s17040725.

Abstract

Carbon fiber microelectrode (CFME) has been extensively applied in the biosensor and chemical sensor domains. In order to improve the electrochemical activity and sensitivity of the CFME, a new CFME modified with carbon nanotubes (CNTs), denoted as CNTs/CFME, was fabricated and investigated. First, carbon fiber (CF) monofilaments grafted with CNTs (simplified as CNTs/CFs) were fabricated in two key steps: (i) nickel electroless plating, followed by (ii) chemical vapor deposition (CVD). Second, a single CNTs/CF monofilament was selected and encapsulated into a CNTs/CFME with a simple packaging method. The morphologies of as-prepared CNTs/CFs were characterized by scanning electron microscopy. The electrochemical properties of CNTs/CFMEs were measured in potassium ferrocyanide solution (K₄Fe(CN)₆), by using a cyclic voltammetry (CV) and a chronoamperometry method. Compared with a bare CFME, a CNTs/CFME showed better CV curves with a higher distinguishable redox peak and response current; the higher the CNT content was, the better the CV curves were. Because the as-grown CNTs significantly enhanced the effective electrode area of CNTs/CFME, the contact area between the electrode and reactant was enlarged, further increasing the electrocatalytic active site density. Furthermore, the modified microelectrode displayed almost the same electrochemical behavior after 104 days, exhibiting remarkable stability and outstanding reproducibility.

摘要

碳纤维微电极(CFME)已在生物传感器和化学传感器领域得到广泛应用。为了提高CFME的电化学活性和灵敏度,制备并研究了一种用碳纳米管(CNTs)修饰的新型CFME,记为CNTs/CFME。首先,通过两个关键步骤制备了接枝有CNTs的碳纤维(CF)单丝(简称为CNTs/CFs):(i)化学镀镍,接着是(ii)化学气相沉积(CVD)。其次,选择一根CNTs/CF单丝,用一种简单的封装方法将其封装成CNTs/CFME。通过扫描电子显微镜对制备的CNTs/CFs的形貌进行了表征。在亚铁氰化钾溶液(K₄Fe(CN)₆)中,采用循环伏安法(CV)和计时电流法测量了CNTs/CFMEs的电化学性能。与裸CFME相比,CNTs/CFME显示出更好的CV曲线,具有更高的可分辨氧化还原峰和响应电流;CNT含量越高,CV曲线越好。由于生长的CNTs显著增加了CNTs/CFME的有效电极面积,扩大了电极与反应物之间的接触面积,进一步增加了电催化活性位点密度。此外,修饰后的微电极在104天后表现出几乎相同的电化学行为,具有显著的稳定性和出色的重现性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/409e/5421685/03f2d253aa9c/sensors-17-00725-g001.jpg

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