Structural, dielectric, and optical properties based on Spinel Ferrite (Mn0.5Fe1.5Mg0.5Ni0.5O4) nanoparticles filler reinforced PVA for optoelectronic, laser CUT-OFF filters and energy storage devices.

E. A. Rabiea, Aly Samy Abouhaswa, Hala Abomostafa
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Abstract

Abstract The fabrication of polymer nanocomposites with specialized traits is gaining popularity across the world due to novel added qualities. In this work we used a flash auto-combustion method to prepare Mn0.5Fe1.5Mg0.5Ni0.5O4 nanoparticles and the casting method to prepare Mn0.5Fe1.5Mg0.5Ni0.5O4/PVA nanocomposite polymer films with doping of nanoparticles various from 1–5 wt. %. The effect of Mn0.5Fe1.5Mg0.5Ni0.5O4 nanoparticles addition on the structural, optical, and dielectric characteristics of nanocomposite polymer films was analyzed. The structural properties were studied using X-ray diffraction pattern (XRD), high resolution transmission electron microscope (HRTEM), Fourier transform infrared (FTIR), and field emission scanning electron microscope (FESEM). The effects of nanoparticles doping on ac conductivity, electric modulus, impedance, and dielectric constant were investigated. It shows that Mn0.5Fe1.5Mg0.5Ni0.5O4/PVA nanocomposite films have higher values of permittivity and ac conductivity than PVA and exhibit lower values of dielectric loss, electric modulus, and impedance. The optical properties showed the indirect optical decreased from 4.8 to 4.4 eV. According to the experimental results, these nanocomposite polymer films show promise for laser CUT-OFF filters and energy storage devices.
基于尖晶石铁氧体(Mn0.5Fe1.5Mg0.5Ni0.5O4)纳米颗粒填料增强PVA的光电、激光截止滤波器和储能器件的结构、介电和光学性能
具有特殊特性的聚合物纳米复合材料由于具有新的附加特性而在世界范围内越来越受欢迎。本文采用闪速自燃烧法制备了Mn0.5Fe1.5Mg0.5Ni0.5O4纳米颗粒,并采用浇铸法制备了掺杂1-5 wt. %纳米颗粒的Mn0.5Fe1.5Mg0.5Ni0.5O4/PVA纳米复合聚合物薄膜。分析了Mn0.5Fe1.5Mg0.5Ni0.5O4纳米粒子的加入对纳米复合聚合物薄膜结构、光学和介电特性的影响。采用x射线衍射图(XRD)、高分辨透射电子显微镜(HRTEM)、傅里叶变换红外(FTIR)和场发射扫描电子显微镜(FESEM)研究了其结构性质。研究了纳米颗粒掺杂对导电率、电模量、阻抗和介电常数的影响。结果表明,Mn0.5Fe1.5Mg0.5Ni0.5O4/PVA纳米复合膜具有比PVA更高的介电常数和交流电导率,具有更低的介电损耗、电模量和阻抗。光学性质表明间接光学从4.8 eV降低到4.4 eV。实验结果表明,这些纳米复合聚合物薄膜在激光截止滤光片和储能器件方面具有广阔的应用前景。
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