Abstract
This study reports a carboxymethyl cellulose (CMC)/polyvinyl alcohol (PVA) composite film that incorporates titanium dioxide nanoparticles (TiO2NPs) and silicone microemulsion (SiME). Mechanical properties are used as a judgment tool to select the optimum ratio of the CMC/PVA. Different experiments are used to fully investigate the morphological, physical, hydrophilic, and antimicrobial properties of CMC/PVA loaded with 1% TiO2NPs composite films with various SiME concentrations (1, 3, and 5%). Higher SiEM concentrations significantly affect the composite films’ structure and surface morphology. Fourier Transforms Infrared Spectroscopy–Attenuated Total Reflectance (FTIR–ATR), and X-ray diffraction (XRD) confirm the structural interactions among CMC, PVA, TiO2NPs, and SiEM. Furthermore, the addition of SiEM was playing a role in improving films mechanical, microstructure, and wettability. Increasing the concentration of SiEM to 5% decreases the contact angle from 61.72° to 25.46° this due to the film surface roughness. Remarkably, 3 and 5% SiEM incorporation significantly improves the inhibition ability of the CMC/PVA composite films against Gram-positive and Gram-negative bacteria and unicellular and filamentous fungi as well. CMC/PVA composite film containing 1% TiO2NPs and 5% SiEM exhibits functional properties for hydrophobic broad-spectrum antimicrobial applications. Additionally, the MIC values for bacterial strains, unicellular fungi, and filamentous fungi were recorded as a maximum of 3.125, 6.25, and 12.5 mg/mL, respectively. This work highlights the use of biopolymers in a new approach for the fabrication of new multifunctional films, which are suitable for large-scale production and multipurpose applications.
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Hasanin, M. S., Ibrahim, N. A., & Kamel, S. (2026). Fabrication and Characterization of Sustainable Multifunctional Films Based on Carboxymethyl Cellulose and Poly (Vinyl Alcohol) Doped with TiO2 Nanoparticles and Silicone Microemulsion. Journal of Inorganic and Organometallic Polymers and Materials, 36(5), 2810–2821. https://doi.org/10.1007/s10904-025-04061-3
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