AI Article Synopsis

  • * Characterization techniques revealed strong electromechanical responses and identified a pure perovskite phase, while scanning electron microscopy showed uneven distribution of nanoparticles within the chitosan matrix.
  • * The study suggests that adding rare earth elements boosts the composite's electrical and piezoelectric performance, indicating their potential use in flexible devices and addressing environmental issues in energy harvesting and biomedical applications.

Article Abstract

This paper investigates the synthesis and characterization of eco-friendly piezoelectric composite thin films composed of chitosan and LnO-doped NaBiTiO-BaTiO (NBT-BT) nanoparticles. The films were fabricated using a solution-casting technique, successfully embedding the particles into the chitosan matrix, which resulted in enhanced piezoelectric properties compared to pure chitosan. Characterization methods, such as photoluminescence spectroscopy and piezo-response force microscopy (PFM) which revealed strong electromechanical responses, with notable improvements in piezoelectric performance due to the inclusion of NBT-BT nanoparticles. X-ray diffraction (XRD) analysis revealed a pure perovskite phase with the space group R3c for NBT-BT and NBT-BT-Ln particles. Scanning electron microscopy (SEM) images showed a non-uniform distribution of NBT-BT particles within the chitosan matrix. The results also suggest that the incorporation of rare earth elements further enhances the electrical and piezoelectric properties of the composites, highlighting their potential in flexible and smart device applications. Overall, these findings underscore the potential of chitosan-based composites in addressing environmental concerns while offering effective solutions for energy harvesting and biomedical applications.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC11547821PMC
http://dx.doi.org/10.3390/nano14211755DOI Listing

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