A highly sensitive non-enzymatic glucose sensor based on a simple two-step electrodeposition of cupric oxide (CuO) nanoparticles onto multi-walled carbon nanotube arrays

计时安培法 化学 碳纳米管 循环伏安法 纳米颗粒 检出限 基质(水族馆) 生物传感器 氧化物 化学工程 纳米技术 无机化学 分析化学(期刊) 电极 电化学 色谱法 有机化学 材料科学 物理化学 生物化学 海洋学 地质学 工程类
作者
Yang Jiang,Liao‐Chuan Jiang,Wei‐De Zhang,Sundaram Gunasekaran
出处
期刊:Talanta [Elsevier BV]
卷期号:82 (1): 25-33 被引量:265
标识
DOI:10.1016/j.talanta.2010.03.047
摘要

A novel, stable and highly sensitive non-enzymatic glucose (Glc) sensor was developed using vertically well-aligned multi-walled carbon nanotubes array (MWCNTs) incorporated with cupric oxide (CuO) nanoparticles. The MWCNTs array was prepared by catalytic chemical vapor deposition on a tantalum (Ta) substrate, while a simple and rapid two-step electrodeposition technique was used to prepare the CuO–MWCNTs nanocomposite. First, Cu nanoparticles were deposited onto MWCNTs at constant potential and then they were oxidized into CuO by potential cycling. The electrocatalytic activity of CuO–MWCNTs array was investigated for Glc under alkaline conditions using cyclic voltammetry and chronoamperometry. The sensor exhibited a linear response up to 3 mM of Glc and sensitivity of 2190 μA mM−1 cm−2, which is two to three orders of magnitude higher than that of most non-enzymatic Glc sensors reported in the literature. The sensor response time is less than 2 s and detection limit is 800 nM (at signal/noise = 3). When tested with human blood serum samples, the sensor exhibited high electrocatalytic activity, stability, fast response and good selectivity against common interfering species, suggesting its potential to be developed as a non-enzymatic Glc sensor.
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