Modified cellulose nanocrystals enhanced polycaprolactone multifunctional films with barrier, UV-blocking and antimicrobial properties for food packaging

聚己内酯 食品包装 纳米复合材料 材料科学 傅里叶变换红外光谱 极限抗拉强度 表面改性 复合数 化学工程 化学 聚合物 食品科学 复合材料 工程类
作者
Asmaa N. Alkassfarity,Mohamed A. Yassin,Mona H. Abdel Rehim,Lipeng Liu,Ziyue Jiao,Bo Wang,Zhiyong Wei
出处
期刊:International Journal of Biological Macromolecules [Elsevier BV]
卷期号:261 (Pt 2): 129871-129871 被引量:34
标识
DOI:10.1016/j.ijbiomac.2024.129871
摘要

The packaging industry demands improved eco-friendly materials with new and enhanced properties. In this context, bio-nanocomposite films with antimicrobial and UV-shielding properties based on modified cellulose nanocrystals/polycaprolactone (MCNC/PCL) were fabricated via solution casting method, and then food packaging simulation was carried out. CNCs were obtained by acid hydrolysis followed by successful functionalization with Quaternary ammonium surfactant, confirmed by FTIR, XPS, XRD, TEM, and DLS analyses. Furthermore, the morphological, physical, antibacterial, and food packaging properties of all prepared films were investigated. Results showed that the mechanical, UV blocking, barrier properties, and antibacterial activity of all composite films were remarkably improved. Particularly, the addition of 3 wt% MCNC increased the tensile strength and elongation at break by 27.5 % and 20.0 %, respectively. Moreover, the permeability of O2, CO2, and water vapor dramatically reduced by 97.6 %, 96.7 %, and 49.8% compared to the Neat PCL. Further, the UV-blocking properties of the composite films were significantly improved. The antimicrobial properties of MCNC/PCL films showed good antimicrobial properties against S. aureus. Finally, cherry packaged with 1 and 3 wt% MCNC films exhibited satisfactory freshness after 22 days of preservation. Overall, the fabricated PCL nanocomposite films can be utilized in the food packaging industry.
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