Synthesis and Characterization of Lanthanum doped Co-Zn Spinel Ferrites Nanoparticles by Sol-Gel Auto Combustion Method

Z. A. Gilani, A. Farooq, H. Asghar, M. Khalid, Furhaj Ahmad Shaikh, Siraj ul Islam, M. Tariq, Muhammad Nawaz, Saira Yasmeen
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引用次数: 2

Abstract

Spinel ferrites nanoparticles play a significant role in our everyday lives. In the current work, La3+ doped Co-Zn ferrites with chemical formula Co0.5Zn0.5LaxFe2−xO4 (x = 0.00 to x = 0.2 with step size 0.04) was effectively prepared by sol gel technique. The formation of FCC spinel structure was confirmed by X-Ray diffraction (XRD) analysis. The average crystallite size were calculated to be in the 8 nm to 13 nm range. The lattice parameters were found to be decreased with the doping of lanthanum (La3+) contents. X- Ray density is analyzed to increase as the concentration of (La3+) doping increases, this is due to the fact that La3+ ion has a higher molar weight than Fe3+ ion. The spinel phase structure was affirmed by using FTIR.The two main absorption bands ν1 and ν2 are referred to tetrahedral stretching band and octahedral stretching band respectively, is found to be in the range of at around 400–530 cm− 1. Spinel ferrites, such as Co-Zn spinel ferrites, have dielectric features that make them ideal for use in high-frequency applications. With new potential applications being investigated all the time. Physical properties, synthesis method, as well as sintering temperature and time, are all important factors in regulating the properties of dielectric materials. The dielectric features were measured in the frequency of 1 MHz to 3 GHz range. Lowered dielectric parameters studied across a higher frequency range recommend that such nano crystalline ferrites could be used to fabricate the equipment needed to perform at GHz frequencies.
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溶胶-凝胶自燃烧法制备镧掺杂Co-Zn尖晶石铁氧体纳米颗粒及其表征
尖晶石铁氧体纳米颗粒在我们的日常生活中起着重要的作用。本文采用溶胶-凝胶法制备了化学式为Co0.5Zn0.5LaxFe2−xO4 (x = 0.00 ~ x = 0.2,步长为0.04)的La3+掺杂Co-Zn铁氧体。通过x射线衍射(XRD)分析证实了FCC尖晶石结构的形成。平均晶粒尺寸在8 ~ 13 nm之间。随着镧(La3+)含量的增加,晶格参数有所降低。X射线密度随着(La3+)掺杂浓度的增加而增加,这是由于La3+离子的摩尔质量高于Fe3+离子。用FTIR对尖晶石相结构进行了验证。两个主要吸收带ν1和ν2分别为四面体拉伸带和八面体拉伸带,在400 ~ 530 cm−1范围内。尖晶石铁氧体,如Co-Zn尖晶石铁氧体,具有介电特性,使其成为高频应用的理想选择。新的潜在应用一直在被研究。介质材料的物理性能、合成方法以及烧结温度和时间都是影响介质材料性能的重要因素。在1 MHz ~ 3 GHz频率范围内测量了介质特性。在更高频率范围内降低介电参数的研究表明,这种纳米晶体铁氧体可以用于制造在GHz频率下工作所需的设备。
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