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由嵌入4A分子筛和混合聚合物基质(明胶和聚乙烯醇)中的功能性纳米颗粒(TiO和ZnO)组成的纳米复合薄膜。

Nanocomposite films consisting of functional nanoparticles (TiO and ZnO) embedded in 4A-Zeolite and mixed polymer matrices (gelatin and polyvinyl alcohol).

作者信息

Azizi-Lalabadi Maryam, Alizadeh-Sani Mahmood, Divband Baharak, Ehsani Ali, McClements David Julian

机构信息

Research Center for Environmental Determinants of Health (RCEDH), Kermanshah University of Medical Sciences, Kermanshah, Iran.

Student's Scientific Research Center, Department of Food Safety and Hygiene, School of Public Health, Tehran University of Medical Sciences, Tehran, Iran.

出版信息

Food Res Int. 2020 Nov;137:109716. doi: 10.1016/j.foodres.2020.109716. Epub 2020 Sep 22.

Abstract

In this study, nanocomposite films with enhanced functional properties were prepared by loading titanium dioxide (TiO) and/or zinc oxide (ZnO) nanoparticles within 4A zeolite (4AZ) particles, and then incorporating these nanocomposites into a poly (vinyl alcohol) (PVA) and gelatin matrix. The composition and morphology of the films were characterized using atomic force microscopy (AFM), scanning electron microscopy (SEM), Fourier transform infrared (FTIR), and X-ray diffraction (XRD). The thermal behavior of the films was established using thermogravimetric analysis (TGA) and differential scanning calorimetry (DSC). SEM showed the nanoparticles were dispersed throughout the films when used at these levels. FTIR indicated that the inorganic nanoparticles interacted with the PVA/gelatin polymer network through hydrogen bonding. XRD confirmed that the nanoparticles were in a crystalline state within the films. DSC and TGA showed that introduction of the nanoparticles modified the nanocomposite's thermal behavior. Nanoparticle addition had a number of effects: (i) it decreased film transparency from 78.7% to 69.4% 72.0% and 69.7%; (ii) it decreased film water vapor permeability (WVP) from 8.20 × 10 to 5.13 × 10, 5.71 × 10 and 5.24 × 10 g/Pa.h.m; (iii) it reduced film oxygen permeability from 4.57 to 3.29, 3.10 and 3.00 mEq/g; and (i) it increased film tensile strength (TS) from 14.6 to 22.0, 20.3 and 18.0 MPa, for PVA/gelatin films containing 0%, 1.5% ZnO, 1.5% TiO and 1% (ZnO + TiO) nanoparticles, respectively (with the nanoparticles being trapped within 4AZ). Moreover, active nanocomposite films exhibited significant antimicrobial effects especially against gram-negative bacteria. Overall, our results show that nanoparticle-loaded PVA/gelatin nanocomposites may be useful as active biodegradable nanocomposite films for application in the packaging industry and that their properties can be modulated by controlling the nature and level of nanoparticles incorporated.

摘要

在本研究中,通过将二氧化钛(TiO)和/或氧化锌(ZnO)纳米颗粒负载于4A沸石(4AZ)颗粒中,然后将这些纳米复合材料掺入聚乙烯醇(PVA)和明胶基质中,制备出具有增强功能特性的纳米复合薄膜。使用原子力显微镜(AFM)、扫描电子显微镜(SEM)、傅里叶变换红外光谱(FTIR)和X射线衍射(XRD)对薄膜的组成和形态进行了表征。使用热重分析(TGA)和差示扫描量热法(DSC)确定了薄膜的热行为。SEM显示,当以这些用量使用时,纳米颗粒分散在整个薄膜中。FTIR表明,无机纳米颗粒通过氢键与PVA/明胶聚合物网络相互作用。XRD证实,纳米颗粒在薄膜中呈结晶状态。DSC和TGA表明,纳米颗粒的引入改变了纳米复合材料的热行为。添加纳米颗粒有多种影响:(i)它将薄膜透明度从78.7%降低至69.4%、72.0%和69.7%;(ii)它将薄膜水蒸气透过率(WVP)从8.20×10降低至5.13×10、5.71×10和5.24×10 g/Pa·h·m;(iii)它将薄膜氧气透过率从4.57降低至3.29、3.10和3.00 mEq/g;以及(i)对于分别含有0%、1.5% ZnO、1.5% TiO和1%(ZnO + TiO)纳米颗粒的PVA/明胶薄膜,它将薄膜拉伸强度(TS)从14.6提高至22.0、20.3和18.0 MPa(纳米颗粒被困在4AZ内)。此外,活性纳米复合薄膜表现出显著的抗菌效果,尤其是对革兰氏阴性菌。总体而言,我们的结果表明,负载纳米颗粒的PVA/明胶纳米复合材料可用作活性可生物降解纳米复合薄膜,应用于包装行业,并且其性能可通过控制掺入的纳米颗粒的性质和用量来调节。

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