纳米复合材料
复合数
材料科学
壳聚糖
化学工程
食品包装
基质(化学分析)
褐变
复合材料
激进的
纳米颗粒
苯酚
纳米晶
研磨
动力学
作者
Gao W,Bin Mu,Fangfang Yang,Yalong Li,Y F Tang,Zhihe Luo,Aiqin Wang
摘要
ABSTRACT The potential of chitosan (CS) films for the preservation has been explored, and it is recognized as one of the promising approaches to enhancing the comprehensive capability of CS films for food control after incorporation of functional nanofillers. Herein, Rhodiola rosea extract/ZnO/palygorskite (RRE/ZnO/Pal) nanocomposites were facilely prepared and incorporated into CS matrix to obtain RRE/ZnO/Pal/CS (RZPC) composite films, in which ZnO/Pal nanocomposites were synthesized by a green phyto‐mediated method followed by loading of R. rosea extract via a semi‐dry grinding process to form organic/inorganic bioactive nanocomposites. The composite films exhibited significantly enhanced antioxidant, antibacterial, mechanical and UV‐shielding properties compared with the pure CS film, as well as the maximum scavenging activities on hydroxyl radicals and 2,2‐diphenyl‐1‐picrylhydrazine radicals of composite films were 92.85% ± 1.59% and 56.89% ± 0.56%, respectively. The antibacterial ratios of composite films containing 6.25% of RRE/ZnO/Pal nanocomposites were 94.92% ± 2.67% and 95.48% ± 2.08% for E. coli and S. aureus , respectively. In addition, the RZPC films effectively delayed browning and deterioration of bananas. This study provides a green method for construction of bioactive nanocomposites and new strategy to design multifunctional CS films for food preservation based on the synergistic effect of organic and inorganic components.
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