首页> 外文期刊>ACS Omega >Silver-Decorated Cobalt Ferrite Nanoparticles Anchored onto the Graphene Sheets as Electrode Materials for Electrochemical and Photocatalytic Applications
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Silver-Decorated Cobalt Ferrite Nanoparticles Anchored onto the Graphene Sheets as Electrode Materials for Electrochemical and Photocatalytic Applications

机译:作为电化学和光催化应用的银色装饰钴铁氧体纳米粒子,作为电极材料,用于电化学和光催化应用

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The present work describes the synthesis of Ag-CoFe_(2)O_(4)/rGO nanocomposite as a photocatalyst through the hydrothermal process by the attachment of silver and cobalt ferrite (CoFe_(2)O_(4)) nanoparticles on the surface of reduced graphene oxide. The effect of Ag and reduced graphene oxide (rGO) on the structure, optical, magnetic, photocatalytic, and electrochemical performance of the CoFe_(2)O_(4) is systematically explored through various analytical techniques. The analyses of the observed outcomes reveal that the graphene sheets are exfoliated and decorated with well-dispersed Ag and CoFe_(2)O_(4) nanoparticles. UV–vis spectra indicate a gradual shift in the absorption edge toward the higher wavelength with the addition of Ag ions, which signifies variation in the energy gap of the samples. Photoluminescence results divulge that graphene can decline the electron–hole recombination rate and improve the photocatalytic activity of the Ag-CoFe_(2)O_(4)/rGO nanocomposite. In this context, the Ag-CoFe_(2)O_(4)/rGO sample presents good catalytic activity as compared to the CoFe_(2)O_(4) and Ag-CoFe_(2)O_(4) photocatalysts for the degradation of methylene blue (MB) dye and suggests that the rGO plays a vital role in the Ag-CoFe_(2)O_(4)/rGO nanocomposite. The deterioration rate of the samples is found to be in the order of CoFe_(2)O_(4)(78.03%) < Ag-CoFe_(2)O_(4)(83.04%) < Ag-CoFe_(2)O_(4)/rGO(93.25%) in 100 min for MB dye, respectively, under visible-light irradiation. The room-temperature ferromagnetic behavior of the samples is confirmed by the M –H hysteresis loop measurements. Overall, the Ag-CoFe_(2)O_(4)/rGO nanocomposite promises to be a strong magnetic photocatalyst for contaminated wastewater treatment. The electrochemical performance of all of the samples was examined by the cyclic voltammetry (CV) that exhibits a superior rate performance and cycle stability of the Ag-CoFe_(2)O_(4)/rGO nanocomposite as compared to the other samples.
机译:本作者通过将银和钴铁氧体(CoFe_(2)O_(4))在表面上的纳米颗粒附着在纳米粒子上,描述了通过水热法的合成作为光催化剂的Ag-CoFe_(2)O_(4)/ rgo纳米复合材料的合成还原氧化物氧化物。通过各种分析技术系统探索Ag和氧化石墨烯(RGO)对结构,光学,磁性,光催化和电化学性能的影响,通过各种分析技术来系统地探索CoFe_(2)O_(4)的结构。观察结果的分析表明,石墨烯片被剥离并用井分散的Ag和CoFe_(2)O_(4)纳米颗粒装饰。 UV-VIS光谱指示在添加AG离子的朝向较高波长的吸收边缘中逐渐移位,这表示样品的能隙的变化。光致发光结果透过该石墨烯可以下降电子 - 空穴重组率并改善Ag-Cofe_(2)O_(4)/ rgo纳米复合材料的光催化活性。在这种情况下,与CoFe_(2)O_(4)和Ag-Cofe_(2)o_(4)光催化剂相比,Ag-CoFe_(2)O_(4)/ rgo样品呈现出良好的催化活性,用于降解亚甲基蓝(MB)染料,表明RGO在Ag-Cofe_(2)O_(4)/ rgo纳米复合材料中起着至关重要的作用。发现样品的劣化速率为CoFe_(2)O_(4)(78.03%)

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