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- W4383312510 abstract "The present study describes the preparation and characterization of new nanocomposite films based on a polyethylene oxide/polyvinylidene fluoride (PEO/PVDF) blend, doped with varying weight percentages of silver oxide (Ag2O) nanoparticles using the solution casting process. The films were analyzed using a variety of analytical techniques to understand their properties. The X-ray diffraction analysis revealed the complex formation between PEO/PVDF and Ag2O, indicating that the dopant was interacting with the polymer blend. Fourier transform infrared (FT-IR) analysis showed variations in the spectra with increasing dopant concentration, further confirming the interaction between the dopant and the polymer blend. UV–Vis analysis showed a decrease in the magnitude of the optical band gap (Eg) with an increase in the concentration of Ag2O, indicating an improvement in the optical properties of the films. Scanning electron microscope (SEM) images showed a change in the surface morphology of the films with the addition of Ag2O. The introduction of Ag2O into the PEO/PVDF blend resulted in an increase in the conductivity of the films at room temperature, which can be attributed to the increase in the number of mobile charge carriers and their mobility. Additionally, the dielectric analysis showed a significant dielectric dispersion in the frequency range investigated, which became stronger with increasing amounts of Ag2O in the film. The study suggests that the new nanocomposite films have improved optical and electrical properties, making them suitable for applications in optical devices and dielectric applications." @default.
- W4383312510 created "2023-07-07" @default.
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- W4383312510 date "2023-10-01" @default.
- W4383312510 modified "2023-10-08" @default.
- W4383312510 title "Study of the structural, optical, and electrical properties of polyethylene oxide/ polyvinylidene fluoride (PEO/PVDF) blend dispersed with silver oxide (Ag2O) nanoparticles as an advanced multifunctional matrix for flexible electronic devices" @default.
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- W4383312510 doi "https://doi.org/10.1016/j.physb.2023.415100" @default.
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