论文标题
机械行为,增强的直流电阻率,能带隙和Y脱取代的MG-ZN铁矿的高温磁性特性
Mechanical behavior, enhanced dc resistivity, energy band gap and high temperature magnetic properties of Y-substituted Mg-Zn ferrites
论文作者
论文摘要
我们报告使用常规标准陶瓷技术报告y取代的MG-ZN铁素体的合成。 XRD模式证实了高达X = 0.03的单相立方尖晶石结构,以及YFEO3的次级含量较高的YFEO3含量。 FESEM图像描述了谷物和EDS光谱的分布证实了没有任何不必要的元素。固态反应的完成和尖晶石结构的形成已从FTIR光谱中揭示出来。 FTIR数据以及晶格常数,大量密度和孔隙率进一步用于计算刚度常数(CIJ),弹性常数和Debye温度。所有研究组合物的机械稳定性使用出生的稳定条件从CIJ确认。还使用泊松比和各向异性常数证实了脆性和各向同性性质。观察到DC电阻率在Y含量中的增强。能量带隙(与Y含量增加)与直流电阻率非常吻合。从依赖性的高温磁化曲线中观察到了磁磁相变到顺磁相变。发现随着温度的升高,发现磁矩和饱和度磁化强度降低。居里温度(TC)已从依赖温度磁矩(M-T)和初始渗透率测量,并发现彼此吻合良好。 Y含量减少TC是由于阳离子的重新分布和交换耦合常数的削弱。磁相跃迁已通过Arrott图分析,发现具有二阶相变。 DC电阻率认可制备的铁氧体也适用于高频和高温磁性装置的应用。
We report the synthesis of Y-substituted Mg-Zn ferrites using conventional standard ceramic technique. XRD patterns confirm the single phase cubic spinel structure up to x = 0.03 and appearance of a secondary phase of YFeO3for higher Y contents. FESEM images depict the distribution of grains and EDS spectra confirmed the absence of any unwanted element. Completion of solid state reaction and formation of spinel structure has been revealed from FTIR spectra. The FTIR data along with lattice constant, bulk density and porosity were further used to calculate the stiffness constant (Cij), elastic constant and Debye temperatures. Mechanical stability of all studied compositions is confirmed from Cij using Born stability conditions. Brittleness and isotropic nature are also confirmed using Poisson ratio and anisotropy constants, respectively. The enhancement of dc electrical resistivity with Y content is observed. The energy band gap (increased with Y contents) is found in good agreement with dc electrical resistivity. Ferrimagnetic to paramagnetic phase change has been observed from the field dependent high temperature magnetization curves. The magnetic moments and saturation magnetization were found to be decreased with increasing temperature. The Curie temperature (Tc) has been measured from temperature dependent magnetic moment (M-T) and initial permeability and found to be in good agreement with each other. Decrease in Tc with Y content is due to redistribution of cations and weakening of the exchange coupling constant. The magnetic phase transition has been analyzed by Arrott plot and found to have second order phase transition. The dc resistivity endorses the prepared ferrites are suitable for high frequency and high temperature magnetic device applications as well.