煅烧温度对溶胶-凝胶法合成的稀土正铁钕铁硼纳米粒子的结构、形态和磁性能的影响

Venkata Murali Mohan S, Bharath P., Ramanjaneyulu E., Ramachandran D
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摘要

溶胶-凝胶技术被用来合成稀土正铁钕铁硼纳米粉体。本研究探讨了煅烧温度如何影响 NdFeO3 正铁的结构、形态和磁性能。X 射线衍射研究表明,除了键距和键角之外,煅烧温度对观察到的结构没有明显影响。表面形态和场发射扫描电子显微镜表明,样品的孔隙率受其中微小颗粒的物理形状调节。孔隙率随着煅烧温度的升高而减小,显示出更高的密度,这有助于降低漏电流特征,同时提高击穿强度。这些变化归因于 Fe-O 的键长和键角变化。通过光降解一些有机染料,包括甲基橙(MO)、罗丹明 B(RhB)和亚甲基蓝(MB),对 NdFeO3 非颗粒的光催化活性进行了评估。只要暴露在可见光下,该产品就能对染料进行明显的光催化降解。总之,这项研究旨在建立物理特性与微观结构参数之间的关系,从而对样品中存在的磁性相互作用以及不同煅烧温度下煅烧 NdFeO3 正铁氧体样品的综合行为提供有价值的见解。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Effect of Calcination Temperature on the Structural, Morphological, and Magnetic Properties of Rare-Earth Orthoferrite NdFeO3 Nanoparticles Synthesized by the Sol-Gel Method
The sol-gel technique has been used to synthesize rare earth orthoferrite NdFeO_3 nanopowders. The present investigation examines how calcination temperatures affect the structural, morphological, and magnetic properties of NdFeO3 orthoferrites. X-ray diffraction studies indicate that there is no discernible difference in the observed structures with calcination temperatures other than the bond distances and bond angles. The surface morphology and field-emission scanning electron microscopy indicate that porosity of the samples is regulated by the physical shape of the tiny particles within them. Porosity is minimized as calcination temperature increases, showing a higher density that contributes to reducing leakage current features while improving the break-down strength. These variations are attributed to bond length and bond angle variation of the Fe-O. The photocatalytic activity of the NdFeO3 nonoparticles was assessed by photodegrading a number of organic dyes, including methyl orange (MO), rhodamine B (RhB), and methylene blue (MB). The product displays significant photocatalytic degradation of the dyes whenever exposed to visible light. Overall, this investigation aims to establish a relationship between the physical properties and microstructural parameters to provide valuable insights into the magnetic interactions present in the samples and the comprehensive behavior of NdFeO3 orthoferrites samples calcination at different calcination temperatures.
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