EventsThe 3rd International Online Conference on Polymer Science
Published
This submission belongs to the session S4. Polymer Composites and Nanocomposites of the event The 3rd International Online Conference on Polymer Science
Published date
14 Nov, 2025
Academic Editor
author-avatarAlessandro Pegoretti
Citation
Cintia Proa Coronado, José Abraham Balderas-López, Yessenia Sánchez-Fuentes, Andrea Marisol Medina-Solano, Thermo-Optical Characterization of PVA Films with SiO2-Au Nanocomplexes Using Photoacoustic Spectroscopy., in Proceedings of The 3rd International Online Conference on Polymer Science, 19 November–21 November 2025, MDPI: Basel, Switzerland
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Thermo-Optical Characterization of PVA Films with SiO2-Au Nanocomplexes Using Photoacoustic Spectroscopy.

Andrea Marisol Medina-Solano 1
1. Basic Science Department, Interdisciplinary Professional Unit of Biotechnology of National Polytechnic Institute, Av. Acueducto S/N, col. Barrio la Laguna, Ticomán, C. P. 07340, Mexico City, Mexico, Mexico
Abstract

Recent progress in nanoscience has enabled the development of nanostructured materials with applications in the diagnosis and treatment of diseases. Among these, silicon dioxide (SiO₂) nanoparticles combined with gold nanoparticles (AuNPs) have demonstrated significant promise in biomedical imaging and photothermal therapy due to their optical tunability and biocompatibility. In this study, SiO₂-Au nanocomplexes were synthesized and dispersed in aqueous polyvinyl alcohol (PVA) solutions to fabricate flexible films approximately 200 microns thick. The nanocomposite films were prepared with varying nanoparticle concentrations ranging from 1.50 to 4.5 mg/mL to investigate their optical and thermal behavior. Photopyroelectric (PPE) techniques were employed to determine key parameters such as optical absorption coefficient and thermal diffusivity, which are crucial for assessing their photothermal conversion capabilities. The results indicated that at specific SiO2-Au nanocomplex concentrations, the films exhibited high absorption coefficients in the visible spectrum, particularly at wavelengths of 520 nm and 660 nm. Their thermal diffusivities were recorded to determine their capacity for light-to-heat conversion. These findings highlight the potential of PVA films with SiO₂-Au nanocomplexes for use in minimally invasive photothermal therapies. Additionally, polyvinyl alcoholprovides biocompatibility, ease of processing, and mechanical flexibility, making this nanocomposite system a promising candidate for integration into biomedical devices and therapeutic platforms.

Keywords
Nanocomplexes
optical absorption coefficient
thermal diffusivity
photoacoustic spectroscopy.
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