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首页> 外文期刊>International Journal of Biological Macromolecules: Structure, Function and Interactions >Cellulose acetate/AgNPs-organoclay and/or thymol nano-biocomposite films with combined antimicrobial/antioxidant properties for active food packaging use
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Cellulose acetate/AgNPs-organoclay and/or thymol nano-biocomposite films with combined antimicrobial/antioxidant properties for active food packaging use

机译:醋酸纤维素/ agnps-有机粘土和/或静脉纳米生物复合膜,具有组合抗微生物/抗氧化性能的活性食品包装使用

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摘要

Nano-biocomposite films based on plasticized cellulose acetate/triethyl citrate (CA/TEC) were prepared with silver nanoparticles (AgNPs)/gelatin-modified montmorillonite nanofiller (AgM) and thymol (Th). AgNPs were biosynthesized in situ the clay using Curcuma longa (C. longa) tuber extract. Full characterization of clay and the formulated films was conducted including morphological, physical and functional properties. From the results, the AgNPs showed spherical shape, face centred cubic crystalline structure, and small average size with narrow distribution. Intercalated structure of films was achieved with some exfoliated platelets and clay aggregates. The glass transition temperature (Tg) of CA increased slightly by the added clay but decreased by Th due to its plasticizing effect. Also, the thermal stability of CA was enhanced only by the added clay. Increasing contents of both additives into films declined the optical clarity but enhanced greatly the UV barrier ability. The clay improved the tensile and oxygen barrier properties, while the Th initiated an antagonist effect. Besides, the radical 2,2-diphenyl-1-picrylhydrazyl (DPPH) tests highlighted antioxidant activities of Th-included films. The films showed antimicrobial activities against bacteria and fungi, where Escherichia coli (E. coli) was the most sensitive, with an efficient growth inhibition in vapour-phase method. These materials with antimicrobial/antioxidant properties are promising active packaging. (C) 2018 Elsevier B.V. All rights reserved.
机译:用银纳米颗粒(AgNP)/明胶改性的蒙脱石纳米填充物(AGM)制备基于增塑纤维素/三乙酯(CA / TEC)的纳米生物复合膜(CA / TEC)。使用Curcuma Longa(C. longa)块茎提取物原位粘土生物合成agnps。进行全面表征粘土和配制薄膜,包括形态学,物理和功能性。从结果中,AGNPS显示球形,面朝中心立方晶结构,小平均尺寸,分布窄。用一些剥离的血小板和粘土聚集体实现膜的嵌入结构。 Ca的玻璃化转变温度(Tg)通过添加的粘土略微增加,但由于其增塑作用而减少。此外,仅通过添加的粘土增强Ca的热稳定性。将添加剂的含量升高到薄膜中下调了光学透明度,但大大提高了UV阻挡能力。粘土改善了拉伸和氧气阻隔性能,而TH引发拮抗剂效果。此外,自由基2,2-二苯基-1-富铬(DPPH)试验突出了TH粘膜的抗氧化活性。该薄膜显示出对细菌和真菌的抗微生物活性,其中大肠杆菌(大肠杆菌)是最敏感的,具有高效的生长抑制在气相法中。具有抗微生物/抗氧化剂性能的这些材料是有前途的活性包装。 (c)2018年elestvier b.v.保留所有权利。

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