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用于增强结构和磁性能的TiO掺杂NiCuZnFeO纳米颗粒

TiO-Doped NiCuZnFeO Nanoparticles for Enhanced Structural and Magnetic Properties.

作者信息

Patil Asha D, Pawar Ram A, Patange Sunil M, Jadhav Santosh S, Gore Shyam K, Shirsath Sagar E, Meena Sher Singh

机构信息

Deshbhakt Anandrao Balawantrao Naik Art's and Science College, Chikhali, Sangli 415408, Maharashtra, India.

Department of Physics, Arts, Commerce and Science College, Satral, Ahmednagar 413711, Maharashtra, India.

出版信息

ACS Omega. 2021 Jul 9;6(28):17931-17940. doi: 10.1021/acsomega.1c01548. eCollection 2021 Jul 20.

Abstract

TiO (0-10 wt %)-doped nanocrystalline NiCuZnFeO (Ni-Cu-Zn) ferrites were synthesized using the sol-gel route of synthesis. The cubic spinel structure of the ferrites having the 3 space group was revealed from the analysis of Rietveld refined X-ray diffraction (XRD) data. The secondary phase of TiO with a space group of 41/ was observed within the ferrites with doping, > 3 wt %. The values of lattice parameter were enhanced with the addition of TiO up to 5 wt % and reduced further for the highest experimental doping of 10 wt %. Field emission scanning electron microscopy (FESEM) images exhibit the spherical shape of the synthesized particles with some agglomeration, while the compositional purity of prepared ferrite samples was confirmed by energy-dispersive X-ray spectroscopy (EDX) and elemental mapping. The cubic spinel structure of the prepared ferrite sample was confirmed by the Raman and Fourier transform infrared (FTIR) spectra. UV-visible diffuse reflectance spectroscopy was utilized to study the optical properties of the ferrites. The value of band gap energy for the pristine sample was less than those of the doped samples, and there was a decrement in band gap energy values with an increase in TiO doping, which specifies the semiconducting nature of prepared ferrite samples. A magnetic study performed by means of a vibrating sample magnetometer (VSM) demonstrates that the values of saturation magnetization of the ferrites decrease with the addition of TiO content, and all investigated ferrites show the characteristics of soft magnetic materials at room temperature. The Mössbauer study confirms the decrease in the magnetic behavior of the doped ferrites due to the nonmagnetic secondary phase of TiO.

摘要

采用溶胶 - 凝胶合成路线制备了TiO(0 - 10 wt%)掺杂的纳米晶NiCuZnFeO(Ni - Cu - Zn)铁氧体。通过对Rietveld精修X射线衍射(XRD)数据的分析,揭示了具有Fd3m空间群的铁氧体的立方尖晶石结构。在掺杂量大于3 wt%的铁氧体中观察到了空间群为I41/amd的TiO第二相。晶格参数值随着TiO添加量增加到5 wt%而增大,在最高实验掺杂量10 wt%时进一步减小。场发射扫描电子显微镜(FESEM)图像显示合成颗粒呈球形且有一些团聚,而能量色散X射线光谱(EDX)和元素映射证实了制备的铁氧体样品的成分纯度。拉曼光谱和傅里叶变换红外(FTIR)光谱证实了制备的铁氧体样品的立方尖晶石结构。利用紫外 - 可见漫反射光谱研究了铁氧体的光学性质。原始样品的带隙能量值小于掺杂样品的,并且随着TiO掺杂量增加带隙能量值减小,这表明制备的铁氧体样品具有半导体性质。通过振动样品磁强计(VSM)进行的磁性研究表明,铁氧体的饱和磁化强度值随着TiO含量的添加而降低,并且所有研究的铁氧体在室温下都表现出软磁材料的特性。穆斯堡尔研究证实,由于TiO的非磁性第二相,掺杂铁氧体的磁性行为有所降低。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f030/8296002/ebcd5d90d52b/ao1c01548_0002.jpg

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