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Ag-Vanadates/GO Nanocomposites by Aerosol-Assisted Spray Pyrolysis: Preparation and Structural and Electrochemical Characterization of a Versatile Material

机译:气溶胶辅助喷雾热解法制备Ag-钒酸盐/ GO纳米复合材料:多种材料的制备,结构和电化学表征

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摘要

In this article, we describe the deposition by aerosol-assisted spray pyrolysis of different types of silver vanadate nanocomposites with and without graphene oxide (GO) on different substrates (carbon paper (CP) and fluorine-doped tin oxide (FTO)). When deposited on CP, different amounts of GO were added to the Ag and V precursor solution to study the effect of GO on the physicochemical properties of the resulting Ag-vanadate. It is shown that the addition of GO leads mainly to the formation of nanoparticles of the Ag2V4O11 phase, whereas Ag2V4O11 and Ag3VO4 are obtained without the addition of GO. The morphology and chemical properties of the composites were determined by scanning and transmission electron microscopies, X-ray diffraction, X-ray photoemission spectroscopy, and UV–visible and Raman spectroscopies. In addition, the photoelectrochemical (PEC) properties of such composites were studied by CV, linear sweep voltammetry, and electrochemical impedance spectroscopy. The ideal AgxVOy and GO ratio was optimized for obtaining higher photocurrent values and a good stability. The results showed that the presence of GO improves the electrical conductivity of the catalyst layer as well as the electron injection from the oxide to the electrode surface. The deposition of pure Ag2V4O11 on FTO does not lead to samples with stable PEC performances. Samples grown on CP supports showed an efficient electrochemical detection of small amounts of ethylenediamine in water solution.
机译:在本文中,我们描述了通过气溶胶辅助喷雾热解法在不同基材(复写纸(CP)和掺氟氧化锡(FTO))上沉积有和没有氧化石墨烯(GO)的不同类型的钒酸银纳米复合材料的方法。当沉积在CP上时,将不同量的GO添加到Ag和V的前体溶液中,以研究GO对所得银钒酸盐的物理化学性质的影响。结果表明,添加GO主要导致形成Ag 2 V 4 O 11相的纳米颗粒,而无需添加GO就可以得到Ag 2 V 4 O 11和Ag 3 VO 4。通过扫描和透射电子显微镜,X射线衍射,X射线光发射光谱以及紫外可见和拉曼光谱确定复合材料的形态和化学性能。另外,通过CV,线性扫描伏安法和电化学阻抗谱研究了这种复合材料的光电化学性能。优化了理想的AgxVOy和GO比例,以获得更高的光电流值和良好的稳定性。结果表明,GO的存在改善了催化剂层的电导率以及从氧化物到电极表面的电子注入。纯的Ag2V4O11在FTO上的沉积不会导致样品具有稳定的PEC性能。在CP载体上生长的样品显示出对水溶液中少量乙二胺的有效电化学检测。

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