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Structural, dielectric, and antimicrobial evaluation of PMMA/CeO for optoelectronic devices. | LitMetric

Structural, dielectric, and antimicrobial evaluation of PMMA/CeO for optoelectronic devices.

Sci Rep

Ceramics Department, Advanced Materials Technology and Mineral Resources Research Institute, National Research Centre (NRC), 33 El Bohouth St., Dokki, Giza, 12622, Egypt.

Published: January 2024

In the current report, we have successfully synthesized nanocomposites of PMMA incorporating different doping of CeO through a chemical approach. XRD results reflects decent matching for CeO nanoparticles with 29 nm crystallite size. FTIR spectroscopy demonstrates the characteristic functional groups validating the successful formation of the composite. The optical study of PMMA and the nanocomposites has proven that the optical properties such as band gap, refractive index, optical permittivity, and loss tangent factor are affected by adding CeO to the PMMA matrix.The peak residing around 420 nm by UV measurements is allocated to occurring electrons photoexcitation from the valence to conduction band inherent in CeO. The dielectric measurements were achieved using broadband dielectric spectroscopy upon a wide span of frequencies (10-10 Hz) and within temperatures from - 10 to 80 °C with a step of 10 °C. The permittivity decreases by adding CeO and the dielectric parameters are thermally enhanced, however, the temperature influence is based on CeO content, the higher the CeO amount, the higher the influence of temperature. The results of the nanocomposites revealed antibacterial activity counter to gram-positive bacteria strain (S. aureus, and B. subtilis), and gram-negative bacteria (E. coli, and K. pneumoniae), yeast (C. albicans, as well as fungi (A. niger). Inherently, the change in CeO concentration from 0.01 to 0.1 wt% delivers maximum influence against gram-negative bacteria. These PMMA CeO-doped composites are beneficial for optoelectronic areas and devices.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC11303398PMC
http://dx.doi.org/10.1038/s41598-024-52840-8DOI Listing

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