Influence of Mg2+ Substitution on Structural, Electrical Polarization, Optical Properties and magnetic Properties of Sr-Based R-Type Hexagonal Ferrites

Iqra Ijaz, Samreen Saeed, Imran Sadiq, Farhan Sadiq, S.Sajjad Hussain, Mishal Idrees, Sajjad Hussain, Muhammad Shahbaz, Sadaf Naz, Saira Riaz, Shahzad Naseem
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Abstract

In this research work the substitutional effect of Mg2+ on Structural, Electrical Polarization, FTIR, SEM and magnetic properties of  Sr1-xMgx Mn2 Fe4 O11 R-type hexaferrite nanoparticles with compositions (x= 0, 0.25, 0.75,1.0) were investigated. The sol-gel auto-combustion method was adopted to synthesize the samples, and the powder was sintered at 800°C for 4 hours to achieve the stable hexagonal phase. XRD pattern showed that all the prepared samples have a single phase R-type hexagonal structure. The lattice parameter a, c, and unit cell volume V decreased with Mg substitution. The dislocation density increased with Mg substitution, while crystalline size varied with Mg doping. The Fourier transform infrared spectroscopy (FTIR) spectra further verified the single hexagonal phase of the produced samples. The saturation and remanent polarization increased with Mg substitution in the polarization versus electric field loops. The P-E loops also indicate the lossy behavior decreased with Mg substitution. By substituting Mg+2, the saturation magnetization, retentivity, and coercivity increased initially, then decreased. VSM measurements reveal ferrimagnetic and paramagnetic nature for all the samples.  
Mg2+取代对sr基r型六方铁氧体结构、电极化、光学和磁性能的影响
本文研究了Mg2+对组成为(x= 0, 0.25, 0.75,1.0)的Sr1-xMgx Mn2 Fe4 O11 r型六铁体纳米颗粒的结构、电极化、FTIR、SEM和磁性能的取代效应。采用溶胶-凝胶自燃烧法合成样品,粉末在800℃下烧结4小时,得到稳定的六方相。XRD图谱表明,制备的样品均为单相r型六方结构。Mg取代后,晶格参数a、c和胞体体积V减小。位错密度随Mg的加入而增加,而晶粒尺寸随Mg的掺杂而变化。傅里叶红外光谱(FTIR)进一步验证了样品的单六方相。在极化-电场回路中,随着Mg的取代,饱和极化和剩余极化增加。P-E环也表明,随着Mg的取代,损耗行为降低。取代Mg+2后,饱和磁化强度、固位率和矫顽力先增大后减小。VSM测量揭示了所有样品的铁磁性和顺磁性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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