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首页> 外文期刊>Journal of Biosensors & Bioelectronics >Metal Oxide Nanoparticles/Multi-walled Carbon Nanotube Nanocomposite Modified Electrode for the Detection of Dopamine: Comparative Electrochemical Study
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Metal Oxide Nanoparticles/Multi-walled Carbon Nanotube Nanocomposite Modified Electrode for the Detection of Dopamine: Comparative Electrochemical Study

机译:金属氧化物纳米粒子/多壁碳纳米管纳米复合修饰电极检测多巴胺的比较电化学研究

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摘要

Electrochemical properties and sensor application of multi-walled carbon nanotubes (MWCNTs), doped with metal oxides [(MO=nickel oxide (NiO), zinc oxide (ZnO) and iron oxide (Fe3O4)] nanoparticles was investigated using FTIR, XRD, UV-vis spectroscopy, Raman spectroscopy, TEM, SEM, EDX, and cyclic voltammetry techniques. Electrochemical oxidation of dopamine on a glassy carbon electrode (GCE) modified with multi-walled carbon nanotubes doped with metal oxides (GCE/MWCNT/NiO, GCE/MWCNT/ZnO, GCE/MWCNT/Fe3O4) was examined by cyclic voltammetry, EIS and square wave voltammetry in 0.1 M phosphate buffer solution PBS at pH 7. The results were compared with those obtained on bare GCE, GCE/MWCNT and MO GCE modified electrodes (GCE/NiO, GCE/ZnO, GCE/Fe3O4). All electrodes were conditioned at potential of 0.2V (vs Ag/AgCl, sat’d KCl) in DA solution for EIS experiment. It was found that the multi- walled carbon nanotubes improve remarkably the reactivity of NiO, ZnO and Fe3O4 for dopamine oxidation. The GCE/MWCNT/NiO, GCE/MWCNT/ZnO, GCE/MWCNT/Fe3O4 electrodes exhibited good linear properties in the concentration range from 4 × 10-5 μM to 6.25 μM for the quantitative analysis of dopamine (DA) with a limit of detection of 7.99 × 10-12 M, 3.742 × 10-7 M and 1.386 × 10-6 M respectively. The limit of detection of GCE/MWCNT/NiO was better than the other two nanocomposites modified electrodes. The interference study also revealed no AA interference signal at AA concentration 1000 times that of DA. The DPV techniques give well distinct peaks for the DA and AA and a wider separation potential. The prepared electrode exhibited satisfactory stability and long shelf life when stored at ambient conditions. It has been demonstrated that the GCE/MWCNT/NiO modified electrode can be successfully used for the assay of dopamine in some real samples.
机译:使用FTIR,XRD,UV技术研究了掺杂有金属氧化物[(MO =氧化镍(NiO),氧化锌(ZnO)和氧化铁(Fe3O4)]纳米颗粒的多壁碳纳米管(MWCNT)的电化学性能和传感器应用。可见光谱法,拉曼光谱法,TEM,SEM,EDX和循环伏安法。在掺杂有金属氧化物的多壁碳纳米管(GCE / MWCNT / NiO,GCE /在pH为7的0.1 M磷酸盐缓冲溶液PBS中,通过循环伏安法,EIS和方波伏安法检测了MWCNT / ZnO,GCE / MWCNT / Fe3O4)。电极(GCE / NiO,GCE / ZnO,GCE / Fe3O4)在DA溶液中的电势为0.2V(vs Ag / AgCl,饱和KCl),用于EIS实验。碳纳米管显着提高NiO,ZnO和Fe3O4对多巴胺氧化的反应性。 GCE / MWCNT / NiO,GCE / MWCNT / ZnO,GCE / MWCNT / Fe3O4电极在4×10-5μM至6.25μM的浓度范围内表现出良好的线性特性,用于定量分析多巴胺(DA),极限为分别检测7.99×10-12 M,3.742×10-7 M和1.386×10-6 M. GCE / MWCNT / NiO的检出限优于其他两种纳米复合修饰电极。干扰研究还显示,AA浓度为DA的1000倍时,没有AA干扰信号。 DPV技术为DA和AA给出了非常明显的峰,并具有更宽的分离潜力。当在环境条件下储存时,所制备的电极表现出令人满意的稳定性和长的保存期限。已经证明,GCE / MWCNT / NiO修饰电极可以成功地用于某些实际样品中多巴胺的测定。

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