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Application of functionalized multi-walled carbon nanotubes supporting cuprous oxide and silver oxide composite catalyst on copper substrate for simultaneous detection of vitamin B_2, vitamin B_6 and ascorbic acid

机译:负载氧化亚铜和氧化银复合催化剂的功能化多壁碳纳米管在铜基质上的同时检测维生素B_2,维生素B_6和抗坏血酸的应用

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摘要

A new electrochemical sensor was fabricated from chemically functionalized multiwall carbon nanotubes and electrochemically deposited cuprous oxide and silver oxide composite over the nanotubes on copper substrate. The structural, functional, morphological, electrical properties and elemental composition of the composite were characterized by X-ray diffractometry, Fourier transform infrared spectroscopy, field transmission electron microscopy, electrochemical impedance spectroscopy and energy dispersive X-ray spectroscopy. The developed sensor exhibited excellent electrochemical catalytic activity toward oxidation of vitamin B_2 (VB_2), ascorbic acid (AA) and vitamin B_6 (VB_6). Compared to the performance of simple copper substrate, that of the modified electrode was greatly superior. This can be attributed to its robust structure, excellent conductivity and large surface area. With a simple electrode that relies on linear diffusion at the surface, an electrochemical analytical method may have a selectivity problem, i.e., various species present in the target medium may oxidize or reduce at potentials not very different from each other. The conducting porous layer of our modified electrode alters this diffusion characteristic to one of approximately 'thin layer' that facilitates better discrimination between species. In this work, differential pulse voltammetry was used for simultaneous determination of VB_2, AA and VB_6. The linear ranges were 0.05-1752.65 μM, 0.05-1628.54 μM and 0.02-1056.12 μM, and the detection limits (S/N = 3) were 0.014 μM, 0.011 μM and 0.008 μM, respectively. In addition to its high performance, this inexpensive sensor is perfectly stable for simultaneous determination of these species in real samples.
机译:一种新的电化学传感器是由化学功能化的多壁碳纳米管和在铜基底上的纳米管上电化学沉积的氧化亚铜和氧化银复合材料制成的。通过X射线衍射,傅里叶变换红外光谱,场透射电子显微镜,电化学阻抗谱和能量色散X射线谱对复合材料的结构,功能,形态,电学性质和元素组成进行了表征。开发的传感器对维生素B_2(VB_2),抗坏血酸(AA)和维生素B_6(VB_6)的氧化表现出出色的电化学催化活性。与简单的铜基板的性能相比,改性电极的性能要优越得多。这可以归因于其坚固的结构,出色的导电性和较大的表面积。对于依靠表面上线性扩散的简单电极,电化学分析方法可能具有选择性问题,即,目标介质中存在的各种物质可能以彼此相差不大的电势氧化或还原。我们的修饰电极的导电多孔层将这种扩散特性改变为近似“薄层”之一,从而有助于更好地区分物种。在这项工作中,使用差分脉冲伏安法同时测定VB_2,AA和VB_6。线性范围为0.05-1752.65μM,0.05-1628.54μM和0.02-1056.12μM,检出限(S / N = 3)分别为0.014μM,0.011μM和0.008μM。除了其高性能之外,这种廉价的传感器对于同时测定真实样品中的这些物种也非常稳定。

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