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首页> 外文期刊>Applied Surface Science >Enhanced magneto-optical Kerr effect in rare earth substituted nanostructured cobalt ferrite thin film prepared by sol-gel method
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Enhanced magneto-optical Kerr effect in rare earth substituted nanostructured cobalt ferrite thin film prepared by sol-gel method

机译:溶胶-凝胶法制备稀土取代纳米结构钴铁氧体薄膜的磁光克尔效应增强

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摘要

A series of rare-earth (RE)-doped nanocrystalline Co-x RE(1-x,) Fe2O4 (x=0, 0.1, 0.2 and RE: Nd, Eu) thin films were prepared on silicon substrates by a sol-gel process, and the influences of different RE3+ ions on the microstructure, magnetism and polar magneto-optical Kerr effect of the deposited films were investigated. Also this research presents the optimization process of cobalt ferrite thin films deposited via spin coating, by studying their structural and morphological properties at different thicknesses (200, 350 nm) and various heat treatment temperatures 300-850 degrees C. Nanoparticulate polycrystalline thin film were formed with heat treatment above 400 degrees C but proper magnetic properties due to well crystallization of the film were achieved at about 650 degrees C. AFM results indicated that the deposited thin films were crack free exhibiting a dense nanogranular structure. The root-mean square (RMS) roughness of the thin films was in the range of 0.2-3.2 nm. The results revealed that both of the magnetism and magneto optical Kerr (MOKE) spectra of Co-x RE((1-x)) Fe2O4 films could be mediated by doping with various RE ions. The Curie temperature of substituted samples was lower than pristine cobalt ferrite thin films. In MOKE spectra both dominant peaks were blue shifted with addition of RE ions. For low concentration dopant the inter valence charge transfer related rotation was enhanced and for higher concentration dopant the crystal field rotation peak was enhanced. The MOKE enhancement for Eu3+ substituted samples was more than Nd3+ doped cobalt ferrite films. The enhanced MOKEs in nanocrystalline thin films might promise their applications for magneto-optical sensors in adopted wavelengths. (C) 2016 Elsevier B.V. All rights reserved.
机译:通过溶胶-凝胶法在硅衬底上制备了一系列稀土掺杂稀土纳米晶Co-x RE(1-x,)Fe2O4(x = 0,0.1,0.2 and RE:Nd,Eu)薄膜。研究了不同的RE3 +离子对沉积膜的微观结构,磁性和极性磁光克尔效应的影响。通过研究在不同厚度(200、350 nm)和各种热处理温度(300-850摄氏度)下的结构和形态特性,本研究还提出了通过旋涂沉积的钴铁氧体薄膜的优化工艺。形成了纳米颗粒多晶薄膜在高于摄氏400度的温度下进行热处理,但是由于薄膜的良好结晶在约650摄氏度下获得了适当的磁性能。AFM结果表明,沉积的薄膜无裂纹,表现出致密的纳米颗粒结构。薄膜的均方根(RMS)粗糙度在0.2-3.2 nm的范围内。结果表明,Co-x RE((1-x))Fe2O4薄膜的磁性和磁光克尔(MOKE)光谱均可通过掺杂各种RE离子来介导。取代样品的居里温度低于原始钴铁氧体薄膜。在MOKE光谱中,两个主要峰均随着添加RE离子而发生蓝移。对于低浓度的掺杂剂,提高了与电荷转移有关的间隔的旋转,而对于高浓度的掺杂剂,则增强了晶体旋转场。 Eu3 +取代样品的MOKE增强作用大于Nd3 +掺杂钴铁氧体膜。纳米晶体薄膜中增强的MOKE可能会有望将其应用于所采用波长的磁光传感器。 (C)2016 Elsevier B.V.保留所有权利。

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