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The particle size-dependent optical band gap and magnetic properties of Fe-doped CeO2 nanoparticles

机译:Fe掺杂CeO2纳米颗粒的粒度依赖性光带间隙和磁性

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摘要

Fe-doped CeO2 (0%-0.08%) nanoparticles have been synthesized by chemical precipitation method. The nanoparticles have been investigated using thermogravimetric analysis (TGA), X-ray diffraction (XRD), transmission electron microscope (TEM), UV-Vis spectrometer and Vibrating sample magnetometer (VSM) techniques. XRD data exhibited the cubic zincblende type structure for Fe-doped CeO2 nanoparticles. The size of nanoparticles was found to decrease from 20 nm (0%) to 14 nm (8%) with increasing Fe concentration which is confirmed by TEM micrographs. The optical absorption spectra of the nanoparticles show the blue-shift of the wavelength of absorption maximum from 550.2 nm to 336.4 nm with increasing Fe concentration owing to decreasing in particle size. The energy band gap was found to increase slightly with increasing the Fe doping level which was attributed to the decrease in the particle size with Fe content originated from quantum confinement effect. The doped Fe-doped CeO2 nanoparticles revealed room temperature ferromagnetism.
机译:通过化学沉淀法合成了Fe-Doped CeO 2(0%-0.08%)纳米颗粒。已经使用热重分析(TGA),X射线衍射(XRD),透射电子显微镜(TEM),UV-Vis光谱仪和振动样品磁力计(VSM)技术研究了纳米颗粒。 XRD数据表现出Fe掺杂CeO2纳米颗粒的立方Zincblende型结构。发现纳米颗粒的尺寸以增加20nm(0%)至14nm(8%),随着TEM显微照片确认的增加。纳米颗粒的光学吸收光谱显示出吸收波长的蓝偏移,由于颗粒尺寸的减小,由于Fe浓度的增加,吸收波长最大值为550.2nm至336.4nm。发现能带隙略微增加,随着Fe掺杂水平的增加,归因于颗粒尺寸的减少,其源自量子限制效应。掺杂的Fe掺杂的CeO2纳米颗粒揭示了室温铁磁性。

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