首页> 外文期刊>ACS Sustainable Chemistry & Engineering >Ultrasensitive and Selective Hydrazine Determination in Water Samples Using Ag-Cu Heterostructures-Grown Indium Tin Oxide Electrode via Environmentally Benign Methods
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Ultrasensitive and Selective Hydrazine Determination in Water Samples Using Ag-Cu Heterostructures-Grown Indium Tin Oxide Electrode via Environmentally Benign Methods

机译:通过环境良性方法使用Ag-Cu异质结构生长氧化铟锡氧化铟锡水样中的超敏感和选择性肼测定

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The present study describes the facile and fast growth of Ag-Cu dendritic nanostructures (D-AgCuNSs) via an environmentally benign electro-electroless deposition method and determination of hydrazine (HZ) in water samples using the resultant D-AgCuNSs-grown indium tin oxide (ITO) electrode. HZ was also successfully determined with the aid of Raman spectroscopy, in which the Raman signal was enhanced 15-fold at D-AgCuNSs in the presence of HZ, in contrast to bare ITO. Initially, CuNSs were grown on the ITO substrates at different applied potentials and the resultant substrates were used in the galvanic displacement reaction with Ag+ ions and thereby grown D-AgCuNSs on the ITO substrate. The growth of D-AgCuNSs was followed by scanning electron microscopy (SEM), with respect to time and Ag+ concentration. The D-AgCuNSs grown on ITO substrates were further characterized by X-ray diffraction (XRD), X-ray photoelectron spectroscopy (XPS), energy-dispersive spectroscopy (EDS), cyclic voltammetry (CV), and electrochemical impedance spectroscopy (EIS) techniques. XPS shows that the grown D-AgCuNSs contain zerovalent Ag and Cu. Furthermore, the D-AgCuNSs-modified ITO electrode was utilized for carcinogenic HZ determination and excellent catalytic activity was observed at this electrode, in contrast to bare and Cu-modified ITO electrodes. The amperometric determination was accomplished with a wide range of HZ concentrations, from 20 X 10(-9) M to 50 X 10(-6) M (correlation coefficient of R-2 = 0.9934). Furthermore, the ITO/D-AgCuNSs electrode detects HZ with the superior selectivity of 2500-fold in the presence of common interfering ions and biological compounds. The lowest limit of detection (0.12 nM (signal-to-noise (S/N) ratio of 3)) and superior sensitivity (3722 mu A mM(-1) cm(-2)) were achieved toward HZ. In addition, the present sensor was exploited for the determination of HZ in environmental samples and exhibits excellent recovery.
机译:本研究描述了通过环境良性电能沉积方法和使用所得D-Agcuns-生长氧化铟锡的环境良态电能沉积方法和水样中肼(Hz)的肼(Hz)测定的容易和快速生长(ITO)电极。借助于拉曼光谱法也成功地确定了HZ,其中拉曼信号在Hz的情况下在D-AgUns上增强了15倍,与裸ITO相反。最初,在不同施加电位的ITO底物上生长CUNs,并将所得底物用于与Ag +离子的电催化反应中,从而在ITO衬底上生长D- agcUns。随后通过扫描电子显微镜(SEM)和Ag +浓度,然后扫描电子显微镜(SEM)的生长。通过X射线衍射(XRD),X射线光电子能谱(XPS),能量分散光谱(EDS),循环伏安法(CV)和电化学阻抗光谱(EIS)进一步表征在ITO底物上的D- agcunss进一步表征。技术。 XPS表明,生长的D- agcuns含有Zerovalent Ag和Cu。此外,使用D- agcUnss改性的ITO电极用于致癌Hz测定,并且与裸和Cu改性的ITO电极相反,在该电极处观察到优异的催化活性。使用宽范围的Hz浓度,从20×10(-9)m至50×10(-6)m(R-2 = 0.9934的相关系数)完成。此外,ITO / D- agcunss电极在共同干扰离子和生物化合物存在下检测Hz的卓越选择性2500倍。最低的检测限(0.12nm(信号对噪声(S / N)比为3))和朝向Hz实现了优异的灵敏度(3722μmmm(-1)cm(-2))。另外,本发明的传感器被利用用于测定环境样品中的Hz,并且表现出优异的回收率。

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