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Updated: Feb 8, 2026

Application of a Coupling Agent to Improve the Dielectric Properties of Polymer-Based Nanocomposites
Published on: September 19, 2020
Active food packaging based on chitosan-gelatin nanocomposites functionalized with bioactive nanoparticles:
Hui Sun1, Meihui Zhao1, Liming Zhang1
1Hainan Engineering Research Center of Aquatic Resources Efficient Utilization in South China Sea, Key Laboratory of Food Nutrition and Functional Food of Hainan Province, Key Laboratory of Seafood Processing of Haikou, School of Food Science and Technology, Hainan University, Hainan 570228, China.
Abstract:
Addressing the dual challenges of perishable food waste and plastic packaging pollution necessitates innovative solutions. This study developed eco-friendly active films by embedding functional nanoparticles (ZCDG NPs, synthesized from zein, curcumin, dihydroquercetin, and gum Arabic) into a chitosan-gelatin (CS/Gel) matrix (CS/Gel-ZCDG-NPs films). Structural analysis (SEM, AFM) showed a smooth, dense, biocompatible microstructure. The nanocomposite films significantly outperformed CS/Gel films in key properties: Tensile strength has been increased from 2.80 MPa to 5.40 MPa, a 92.8 % increase. The water vapor permeability decreased by 80.72 %, the oxygen permeability decreased by 33.05 %, and the ultraviolet-visible transmittance in the visible light range was reduced to 48 %. FTIR confirmed ZCDG NPs integration into the hydrocolloid network via electrostatic interactions and hydrogen bonding. This integration synergistically boosted functional activities, providing potent antibacterial efficacy (>90 % inhibition of E. coli and S. aureus) and high antioxidant capacity (88.6 % DPPH, 81.4 % ABTS scavenging). As an active, potentially biodegradable packaging, CS/Gel-ZCDG NPs films effectively extended the refrigerated shelf life of Golden pompano and Penaeus vannamei by up to 6 days at 4 ± 1 °C. More importantly, the changes in total volatile basic nitrogen (TVB-N value decreased by 35.76 % and 26.65 %) and lipid oxidation degree (TBARS value declined by 78.96 % and 47.83 %) on the 8th day can prove the preservation effect. This study describes the synergistic enhancement process of functional nanoparticles in composite packaging materials and introduces a new food preservation material.
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