In this study, flexible PVP/SA/Cu 2 O consisting of polyvinylpyrrolidone (PVP), sodium alginate (SA) and copper oxide (Cu 2 O) nanoparticles was fabricated using the solution casting preparation method. Then the PVP/SA/Cu 2 O composites were analyzed by X-ray diffraction (XRD), scanning electron microscope (SEM) and Fourier infra-red spectroscopy (FTIR) techniques. The XRD indicates the types of phases and components of the crystalline and amorphous material. The SEM and FTIR show the successful fabrication of PVP/SA/Cu 2 O composites. The dielectric parameters of the composite PVP/SA/Cu 2 O were evaluated at frequencies of 20Formula: see textHz to 6Formula: see textMHz. The conductivity increased from Formula: see text for PVP/SA to Formula: see text for PVP/SA/Cu 2 O, and the dielectric constant increased from 1600 to 5697. In addition, the relaxation time decreased from Formula: see text Formula: see texts for PVP/SA to Formula: see text Formula: see texts for PVP/SA/Cu 2 O. This work focused on preparing eco-friendly flexible PVP/SA/Cu2O composite for dielectric devices. The novelty of this study lies in fabricating composite materials of integration of PVP and SA with Cu 2 O for enhanced dielectric behavior. The results obtained show that the dielectric parameters of the PVP/SA/Cu 2 O were improved, making these materials suitable for application in energy storage uses.
Atta et al. (Mon,) studied this question.
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