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超声时间以及氧化石墨烯和纳米氧化锌含量对聚乙烯醇纳米复合材料性能的影响。

Effects of ultrasonication duration and graphene oxide and nano-zinc oxide contents on the properties of polyvinyl alcohol nanocomposites.

机构信息

College of Food Science, Sichuan Agricultural University, Yaan 625014, China.

College of Food Science, Sichuan Agricultural University, Yaan 625014, China; School of Materials Science and Engineering, Southwest Jiaotong University, Chengdu 610031, China; California NanoSystems Institute, University of California, Los Angeles, CA 90095, USA.

出版信息

Ultrason Sonochem. 2019 Dec;59:104731. doi: 10.1016/j.ultsonch.2019.104731. Epub 2019 Aug 12.

Abstract

Nanofibrous composite membranes consisting of polyvinyl alcohol (PVA), graphene oxide (GO), and zinc oxide nanoparticles (ZnO NPs) were prepared by and ultrasonic processing, and electrospinning. The performance of the membranes containing different GO-to-ZnO NP mass ratios was comprehensively investigated in terms of density, mechanical properties, water vapor permeability, optical property, biodegradability and antimicrobial properties. The results showed that an appropriate sonication time (30 min) improved the membrane performance; the composite nanofibrous membrane with a GO-to-ZnO NP mass ratio of 3:7 and 30 min sonication exhibited the best performance with a water vapor permeability of (0.62 ± 0.01) × 10 g·h m pa, and strain and stress values of 307.84 ± 2.96% and 12.82 ± 0.56 MPa, respectively. Particularly, the UV barrier property of the composite nanofibrous membrane was enhanced. Furthermore, the membrane exhibited strong antibacterial activity against foodborne pathogenic and spoilage bacteria. Thu, it can thus be used as an active food packaging material to ensure the safety of food products and to extend their shelf-life.

摘要

由聚乙烯醇(PVA)、氧化石墨烯(GO)和氧化锌纳米粒子(ZnO NPs)组成的纳米纤维复合膜是通过超声处理和静电纺丝制备的。研究了不同 GO-ZnO NP 质量比的膜的密度、力学性能、水蒸气透过率、光学性能、生物降解性和抗菌性能。结果表明,适当的超声时间(30 分钟)可以提高膜的性能;GO-ZnO NP 质量比为 3:7 且超声 30 分钟的复合纳米纤维膜具有最佳性能,水蒸气透过率为(0.62±0.01)×10 g·h m pa,应变和应力值分别为 307.84±2.96%和 12.82±0.56 MPa。特别是,复合纳米纤维膜的 UV 阻隔性能得到了增强。此外,该膜对食源性致病和腐败细菌具有很强的抗菌活性。因此,它可用作活性食品包装材料,以确保食品的安全性并延长其保质期。

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