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Physical properties of nanosized (x)NiO/(1-x)CdFe2O4 composites

机译:纳米(x)NiO/(1-x)CdFe2O4复合材料的物理性质

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摘要

This study investigates the optical and magnetic properties of nanosized (x)NiO/(1-x)CdFe2O4 (x = 0.1, 0.2, 0.3, 0.4, 0.5, and 1) composites. The samples were synthesized using the wet coprecipitation technique. The X-ray Diffraction patterns demonstrated the formation of Nickel Oxide (NiO) and Cadmium Ferrite (CdFe2O4) phases without any chemical reaction between them. Fourier Transform Infrared results confirm the formation of pure NiO, pure CdFe2O4 , and nanosized NiO/CdFe2O4 composites. Transmission Electron Microscopy micrographs show agglomeration between the nanoparticles, demonstrating the magnetic interaction between the oxide and ferrite phases. High-Resolution Transmission Electron Microscopy results verify the presence of NiO and CdFe2O4 phases in each nanosized composite without impurities, which is consistent with the XRD data. The ultraviolet-visible spectroscopy results confirmed that HCl is a better solvent than ethanol in investigating the optical properties of nanosized oxide/ferrite composites. Photoluminescence spectra exhibited asymmetricity owing to the presence of various emission peaks, which reveals the distribution of defect states within the bandgap of the nanosized composites. The Mo BULL;ssbauer spectra of the nanosized composites comprised an asymmetrical doublet at 300 K and an asymmetrical centered doublet within minor sextets at 77 K. Vibrating Sample Magnetometer study showed a shift at 77 K, which can be attributed to the spontaneous exchange bias effect. The magnetic parameters extracted from the M H loops of all the synthesized nanosized composites at 77 K are higher than those at 300 K.
机译:本研究研究了纳米(x)NiO/(1-x)CdFe2O4(x = 0.1, 0.2, 0.3, 0.4, 0.5, and 1)复合材料的光学和磁学性能.使用湿共沉淀技术合成样品。X射线衍射图显示了氧化镍(NiO)和镉铁氧体(CdFe2O4)相的形成,它们之间没有任何化学反应。傅里叶变换红外结果证实了纯NiO、纯CdFe2O4和纳米NiO/CdFe2O4复合材料的形成。透射电子显微镜显微照片显示纳米颗粒之间的团聚,证明氧化物和铁氧体相之间的磁相互作用。高分辨透射电子显微镜结果验证了每个纳米复合材料中不存在NiO和CdFe2O4相,没有杂质,这与XRD数据一致。紫外-可见光谱结果证实,在研究纳米氧化物/铁氧体复合材料的光学性能方面,HCl是比乙醇更好的溶剂。由于存在不同的发射峰,光致发光光谱表现出不对称性,这揭示了纳米复合材料带隙内缺陷态的分布。The Mo & BULL;纳米复合材料的ssbauer光谱包括300 K的不对称双合态和77 K的小六重奏中的不对称中心双合态。振动样品磁力计研究显示,在 77 K 处发生偏移,这可归因于自发交换偏置效应。在77 K时,所有合成纳米复合材料的M H环提取的磁参数均高于300 K时的磁参数。

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