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采用溶胶-凝胶法在不同烧结温度下制备的NiCdCuFeO铁氧体的微观结构分析、磁性能、磁热效应及临界行为

Microstructural analysis, magnetic properties, magnetocaloric effect, and critical behaviors of NiCdCuFeO ferrites prepared using the sol-gel method under different sintering temperatures.

作者信息

Kouki Noura, Hcini Sobhi, Boudard Michel, Aldawas Reema, Dhahri Abdessalem

机构信息

Department of Chemistry, College of Science and Arts, Qassim University Buraydah Saudi Arabia.

Laboratory of Water, Membranes and Environment Biotechnology (EMBE), Technopole of Borj Cedria (CERTE) 2050 Hammam Lif Tunisia.

出版信息

RSC Adv. 2019 Jan 15;9(4):1990-2001. doi: 10.1039/c8ra09113g. eCollection 2019 Jan 14.

Abstract

This work focuses on the microstructural analysis, magnetic properties, magnetocaloric effect, and critical exponents of NiCdCuFeO ferrites. These samples, denoted as S1000 and S1200, were prepared using the sol-gel method and sintered separately at 1000 °C and 1200 °C, respectively. XRD patterns confirmed the formation of cubic spinel structures and the Rietveld method was used to estimate the different structural parameters. The higher sintering temperature led to an increased lattice constant (), crystallite size (), magnetization (), Curie temperature ( ), and magnetic entropy change (-Δ ) for samples that exhibited second-order ferromagnetic-paramagnetic (FM-PM) phase transitions. The magnetic entropy changed at an applied magnetic field ( ) of 5 T, reaching maximum values of about 1.57-2.12 J kg K, corresponding to relative cooling powers (RCPs) of 115 and 125 J kg for S1000 and S1200, respectively. Critical exponents (, , and ) for samples around their values were studied by analyzing the ( , ) isothermal magnetizations using different techniques and checked by analyzing the -Δ curves. The estimated values of and exponents (using the Kouvel-Fisher method) and exponent (from ( , ) critical isotherms) were = 0.443 ± 0.003, = 1.032 ± 0.001, and = 3.311 ± 0.006 for S1000, and = 0.403 ± 0.008, = 1.073 ± 0.016, and = 3.650 ± 0.005 for S1200. Obviously, these critical exponents were affected by an increased sintering temperature and their values were different to those predicted by standard theoretical models.

摘要

这项工作聚焦于镍镉铜铁氧体的微观结构分析、磁性能、磁热效应和临界指数。这些样品标记为S1000和S1200,采用溶胶-凝胶法制备,并分别在1000℃和1200℃下烧结。X射线衍射图谱证实了立方尖晶石结构的形成,并用Rietveld方法估算了不同的结构参数。对于表现出二级铁磁-顺磁(FM-PM)相变的样品,较高的烧结温度导致晶格常数()、微晶尺寸()、磁化强度()、居里温度()和磁熵变(-Δ)增加。在5T的外加磁场()下磁熵变,S1000和S1200的最大值分别约为1.57 - 2.12J kg K,对应的相对冷却功率(RCP)分别为115和125J kg。通过使用不同技术分析(,)等温磁化强度研究了样品在其值附近的临界指数(,和),并通过分析-Δ曲线进行了检验。对于S1000,使用Kouvel-Fisher方法估算的和指数以及来自(,)临界等温线的指数分别为 = 0.443 ± 0.003, = 1.032 ± 0.001, = 3.311 ± 0.006;对于S1200,分别为 = 0.403 ± 0.008, = 1.073 ± 0.016, = 3.650 ± 0.005。显然,这些临界指数受烧结温度升高的影响,其值与标准理论模型预测的值不同。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ef33/9059742/4e1351c0ed48/c8ra09113g-f1.jpg

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