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Synthesis, Characterization, and Multifunctional Applications of Cu-Fe and Ni-Fe Nanomaterials

机译:Cu-Fe和Ni-Fe纳米材料的合成,表征和多官能应用

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摘要

Cu-Fe and Ni-Fe nanomaterials (NMs) were successfully obtained via a coprecipitation route. Phase analysis and the micro- and physiochemical structure studies for the as-synthesized NMs were carried out with advanced techniques such as TEM, SEM, XRD, XPS, BET, DRS, TGA, and FTIR. Particles with size ranging from 25 to 70 nm were displayed by all the characterization techniques. A surface area of ~4.48 and 36.52m~(2)/g and band gap energies of ~1.79 and 1.48 eV were calculated for Cu-Fe and Ni-Fe NMs, respectively. Saturation magnetization (Ms) ~77.95 emu/g (for Cu-Fe) and 27.70 emu/g (for Ni-Fe) revealed superparamagnetism for both the NMs. The presence of ethanol and methanol as sacrificial agents contributed effectively toward electrocatalytic H-evolution as compared to pure NMs. Furthermore, under solar light irradiations, Cu-Fe and Ni-Fe NMs displayed 85 and 91% degradation during a time interval of 50 and 110 min, respectively, for toxic industrial methylene blue (MB) dye. Different operational variables such as the catalyst amount, pH values, various scavengers, reusability, and stability were thoroughly investigated. Moreover, in situ analysis was carried out in order to determine the mechanism for degradation reactions. A detailed study about various applications categorized the synthesized NMs as efficient candidates for toxic industrial waste cleanup and energy production at an industrial level.
机译:通过共沉淀途径成功获得Cu-Fe和Ni-Fe纳米材料(NMS)。相位分析及其用于和合成NMS的微观和生理化学结构研究,采用先进的技术,如TEM,SEM,XRD,XPS,BET,DRS,TGA和FTIR。所有表征技术都显示出尺寸为25至70nm的粒子。对于Cu-Fe和Ni-Fe NMS,计算表面积为〜4.48和36.52m〜(2)/ g和〜1.79和1.48eV的带隙能量。饱和磁化强度(MS)〜77.95 EMU / g(用于CU-FE)和27.70 emu / g(对于NI-FE)揭示了NMS的超分度。与纯NMS相比,乙醇和甲醇作为牺牲剂的存在有效地朝向电催化作用H展。此外,在太阳光照射下,Cu-Fe和Ni-Fe NMS在50和110分钟的时间间隔内显示85和91%的降解,用于有毒工业亚甲基蓝(MB)染料。彻底研究了不同的操作变量,例如催化剂量,pH值,各种清除剂,可重用性和稳定性。此外,进行原位分析,以确定降解反应的机制。关于各种应用的详细研究将合成的NMS分类为有毒工业废物清理和产业水平的能源生产的高效候选者。

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