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通过声化学方法合成的铥取代钴尖晶石铁氧体的结构、光学和磁性性质

Structural, optical and magnetic properties of Tm substituted cobalt spinel ferrites synthesized via sonochemical approach.

作者信息

Almessiere M A, Slimani Y, Korkmaz A D, Guner S, Sertkol M, Shirsath Sagar E, Baykal A

机构信息

Department of Nanomedicine Research, Institute for Research and Medical Consultations (IRMC), Imam Abdulrahman Bin Faisal University, P.O. Box 1982, 31441 Dammam, Saudi Arabia; Department of Physics, College of Science, Imam Abdulrahman Bin Faisal University, P.O. Box 1982, 31441 Dammam, Saudi Arabia.

Department of Biophysics, Institute for Research and Medical Consultations (IRMC), Imam Abdulrahman Bin Faisal University, P.O. Box 1982, 31441 Dammam, Saudi Arabia.

出版信息

Ultrason Sonochem. 2019 Jun;54:1-10. doi: 10.1016/j.ultsonch.2019.02.022. Epub 2019 Feb 25.

Abstract

Co-Tm nano-spinel ferrite with chemical formula CoTmFeO (0.0 ≤ x ≤ 0.08) NPs were prepared via sonochemical approach. X-ray powder diffraction patterns, microscopic images (SEM and TEM) and infrared spectra proved the formation of Co spinel ferrite. The effect of Tm substituted on spinal structure was evaluated by lattice parameters, tetrahedral and octahedral bond length and cationic distribution. The band gap energy (Eg) of samples were estimated by performing UV-Vis percent diffuse reflectance (% DR) and applying the Kubelka-Munk theory. Eg values are in an interval between 1.33 eV and 1.64 eV. The analyses of magnetization were performed at room (300 K; RT) and low (10 K) temperatures. Different magnetic parameters including coercivity H, saturation magnetization M, remanence M, squareness ratio (SQR = M/M) and magnetic moment n were deduced and discussed. The results showed superparamagnetic (SPM) nature at RT for x = 0.00 and 0.02 samples. However, the other products exhibit ferromagnetic (FM) nature. At 10 K, all synthesized NPs display FM behavior. An amazing increase in the magnitudes of M, M and H was observed at 10 K in comparison to RT, which is principally due to the reduced thermal fluctuations of magnetic moments at lower temperatures. The Tm substitution affects considerably the magnetizations data. An enhancement in the M, M, and n was detected on increasing the Tm concentration. The SQR values at RT are found to be smaller than 0.5 postulating a single domain nature with uniaxial anisotropy for all produced ferrites. However, SQRs are in the range 0.66-0.76 at 10 K, suggesting the multi magnetic domain at low temperature, except the x = 0.02 product where the SQR = 0.47 indicating the single magnetic domain. The obtained magnetic results were investigated deeply with relation to structural and microstructural properties.

摘要

通过声化学方法制备了化学式为CoTmFeO(0.0≤x≤0.08)的Co-Tm纳米尖晶石铁氧体纳米颗粒。X射线粉末衍射图谱、微观图像(扫描电子显微镜和透射电子显微镜)以及红外光谱证实了Co尖晶石铁氧体的形成。通过晶格参数、四面体和八面体键长以及阳离子分布评估了Tm取代对尖晶石结构的影响。通过进行紫外-可见漫反射率(%DR)并应用库贝尔卡-蒙克理论来估计样品的带隙能量(Eg)。Eg值在1.33 eV至1.64 eV之间。在室温(300 K;RT)和低温(10 K)下进行了磁化分析。推导并讨论了包括矫顽力H、饱和磁化强度M、剩磁M、矩形比(SQR = M/M)和磁矩n在内的不同磁参数。结果表明,对于x = 0.00和0.02的样品,在室温下呈现超顺磁性(SPM)性质。然而,其他产物表现出铁磁性(FM)性质。在10 K时,所有合成的纳米颗粒都表现出FM行为。与室温相比,在10 K时观察到M、M和H的大小有惊人的增加,这主要是由于低温下磁矩的热涨落减小。Tm取代对磁化数据有相当大的影响。随着Tm浓度的增加,检测到M、M和n有所增强。发现室温下的SQR值小于0.5,这表明所有制备的铁氧体具有单畴性质和单轴各向异性。然而,在10 K时,SQR在0.66 - 0.76范围内,表明低温下存在多磁畴,但x = 0.02的产物除外,其SQR = 0.47,表明为单磁畴。结合结构和微观结构性质对获得的磁性结果进行了深入研究。

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