Effect of nickel doping on magnetic and dielectric properties of orthorhombic calcium ferrite nanoparticles

R. UmashankaraRaja , Y.S. Vidya , H.C. Manjunatha , M. Priyanka , R. Munirathnam , K.M. Rajashekara , S. Manjunatha , E. Krishnakanth
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Abstract

Nickel (10∼50 mol%) doped calcium ferrite nanoparticles (NPs) are synthesized by the solution combustion method using lemon juice extract as a reducing agent, followed by calcination at 500°C. The calcined samples are characterized with different techniques. The Bragg reflections of Nickel doping confirm the formation of a single orthorhombic calcium ferrite phase. The crystallite size is estimated using both Scherrer's and the W-H plot method. The surface morphology consists of irregular size and shaped agglomerated NPs along with pores and voids. A blueshift and a broad absorption spectrum is observed with an increase in the direct energy band gap. The direct energy band gap estimated from Wood and Tauc's relationship was found to be 2.91∼2.97 eV with an increase in dopant concentration. The magnetic analysis provided values for saturation magnetization (Ms), remanence (Mr), and coercivity (Hc), while dielectric studies demonstrated a dielectric constant of 2.81, 2.14, and 1.67 with increasing dopant concentration. The variation of dielectric properties of the sample as a function of frequency in the range 0.1∼20 MHz has been studied at room temperature. The dielectric properties of CaFe2O4: Ni (1∼9 mol%) NPs clearly indicate that there is a more pronounced dispersion at lower frequencies, gradually reaching saturation as the frequency increases. The dielectric loss was found to decrease from 4.62, 3.22, and 2.32 with an increase in Ni2+ substitution (10, 30, and 50 mol%) respectively. These results indicate the suitability of these samples for applications in memory devices and high-frequency applications.

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掺杂镍对正方体钙铁氧体纳米粒子磁性和介电性质的影响
以柠檬汁提取物为还原剂,通过溶液燃烧法合成了掺杂镍(10∼50 mol%)的铁酸钙纳米粒子(NPs),然后在 500°C 煅烧。煅烧后的样品采用不同的技术进行表征。掺入镍的布拉格反射证实形成了单一的正方体钙钛矿相。晶粒大小是用舍勒法和 W-H 图法估算出来的。表面形态包括不规则尺寸和形状的团聚 NPs 以及孔隙和空隙。随着直接能带隙的增加,可观察到蓝移和宽吸收光谱。根据伍德和陶克的关系估算出的直接能带隙为 2.91∼2.97 eV,随着掺杂浓度的增加而增加。磁性分析提供了饱和磁化(Ms)、剩磁(Mr)和矫顽力(Hc)的值,而介电研究表明,随着掺杂剂浓度的增加,介电常数分别为 2.81、2.14 和 1.67。在室温下,研究了样品介电性质随频率在 0.1∼20 MHz 范围内的变化。CaFe2O4: Ni (1∼9 mol%) NPs 的介电性能清楚地表明,在较低频率下有较明显的分散,随着频率的增加逐渐达到饱和。随着 Ni2+ 取代量(10、30 和 50 摩尔%)的增加,介电损耗分别从 4.62、3.22 和 2.32 降低。这些结果表明,这些样品适用于存储器件和高频应用。
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