Impact of gamma irradiation on the structural, morphological, and optical properties of PLA/MnFe2O3/ZnO nanocomposites

被引:0
|
作者
lshahrani, B. [1 ]
Korna, A.H. [2 ]
Fares, S. [2 ]
Salman, Montasir [2 ]
机构
[1] Department of Physics, College of Science, King Khalid University, P. O. Box 9004, Abha,61413, Saudi Arabia
[2] Departments of Physics, Faculty of Science, Baha University, Saudi Arabia
来源
Reviews in Physics | 2025年 / 13卷
关键词
Electron energy analyzers - Electron energy loss spectroscopy - Energy gap - Gamma rays - Irradiation - Light absorption - Nanocomposite films - Nanocomposite thin films - Optical conductivity - Optical depth - Optical films - Refractive index;
D O I
10.1016/j.revip.2024.100098
中图分类号
学科分类号
摘要
This study investigates the impact of gamma irradiation on the structural, morphological, and optical properties of PLA/MnFe₂O₃/ZnO nanocomposite films. Nanocomposites were fabricated using a sol-gel method and exposed to varying gamma radiation doses. Characterization techniques, including XRD, EDX, FTIR, EPR, UV–Vis spectroscopy, and EELS, were employed to elucidate the effects of irradiation. Gamma irradiation induced significant structural modifications, such as a reduction in crystallite size (from 15 nm to 8 nm at 150 kGy) and lattice strain. The PLA matrix underwent chain scission and crosslinking, altering the material's properties. The optical bandgap narrowed from 3.2 eV to 2.8 eV at 100 kGy, leading to increased light absorption and changes in refractive index and extinction coefficient. The tunable light response, evidenced by changes in optical conductivity and electron energy loss, offers potential applications in optoelectronic devices. Gamma irradiation emerges as a versatile tool for tailoring the properties of PLA/MnFe₂O₃/ZnO nanocomposite films. The findings pave the way for the development of novel nanocomposite-based materials with tailored optical, electronic, and magnetic properties. © 2024 The Author(s)
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