Synthesis and characterization of PEG/CS‐AgNO3 polymer nanocomposites for flexible optoelectronic and energy storage applications

Author:

Alsalmah Hessa A.1,Rajeh A.2ORCID,Farea M. O.3,Nur Omer4

Affiliation:

1. Department of Physics, College of Science Imam Mohammad Ibn Saud Islamic University (IMSIU) Riyadh Saudi Arabia

2. Physics Department, Faculty of Applied Science Amran University Sana'a Yemen

3. Physics Department, Faculty of Science Ibb University Ibb Yemen

4. Department of Science and Technology Linkoping University Norrkoping Sweden

Abstract

AbstractThe Polyethylene glycol (PEG) and Chitosan (CS)/silver nitrate (AgNO3) thin films were prepared by utilizing the casting technique to enhance their optical, dielectric, and electrical properties. Their physicochemical characteristics were investigated using a variety of techniques. The FT‐IR study demonstrates that the addition of AgNO3 NPs results in a discernible difference in the intensities and locations of vibrational peaks of all bands, supporting the incorporation of AgNO3NPs inside the PEG/CS. The XRD analysis indicates that the peak at 2θ = 23.1° broadens and strengthens proportionally with the increase of AgNO3 NPs. This observation suggests that the incorporation of AgNO3 NPs into PEG/CS results in a greater degree of amorphous characteristics compared to the PEG/CS blend. Additionally, when the amount of AgNO3 NPs increases in the PEG/CS, the energy band gap decreases, resulting in the creation of localized states between the valence and conduction bands. These polymer nanocomposite films' electrical conductivity, dielectric constant, and dielectric loss all increased with frequency increased and showed variance for various composite concentrations. These AgNO3NPs/PEG/CS films can be promising options for frequency‐tunable nanodielectrics, flexible dielectric substrates, and bandgap‐regulated materials for upcoming microelectronic, capacitive energy storage, and optoelectronic technologies, according to the experimental results.Highlights AgNO3NPs/PEG/CS nanocomposites films were obtained. The optical properties of the prepared films were calculated. Optical energy‐gap for prepared samples was reduced after adding AgNO3NPs. The dielectric properties of the AgNO3NPs/PEG/CS films are improved. AgNO3NPs/PEG/CS films were suggested to be used in energy storage devices.

Funder

Imam Mohammed Ibn Saud Islamic University

Publisher

Wiley

Subject

Materials Chemistry,Polymers and Plastics,General Chemistry,Ceramics and Composites

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