Suppr超能文献

具有可见光响应性、自激活特性且具有持续抗菌活性的用于食品包装的生物纳米复合薄膜。

Visible light responsive, self-activated bionanocomposite films with sustained antimicrobial activity for food packaging.

作者信息

Ni Yongsheng, Shi Shuo, Li Min, Zhang Liang, Yang Chengyuan, Du Ting, Wang Shaochi, Nie Hongqing, Sun Jing, Zhang Wentao, Wang Jianlong

机构信息

College of Food Science and Engineering, Northwest A&F University, Yangling 712100, Shaanxi, China.

Qinghai Provincial Key Laboratory of Qinghai-Tibet Plateau Biological Resources, Northwest Institute of Plateau Biology, Chinese Academy of Sciences, Qinghai 810008, China.

出版信息

Food Chem. 2021 Nov 15;362:130201. doi: 10.1016/j.foodchem.2021.130201. Epub 2021 May 25.

Abstract

The research on a new type of low-cost, less-loss and adjustable sustained antibacterial activity food packaging films with self-activation ability and great industrialization potentiality is of great scientific and technological interest. Herein, a novel chitosan/negatively charged graphitic carbon nitride self-activation bionanocomposite films was prepared by one-step electrostatic self-assembly. First, the antibacterial efficiency of this film could reach to 99.8 ± 0.26% against E. coli and 99.9 ± 0.04% against S. aureus through self-activated under visible light. Second, this film can effectively extend the shelf life of tangerines to 24 days. Hemolysis and cell experiment test proved that this film was safe and nontoxic. Finally, negatively charged graphitic carbon nitride with low-cost can improve the mechanical, thermal and hydrophobic properties of neat chitosan films. This work can provide a new pathway for the preparation of low-cost packaging films with excellent visible light responsive property and sustainable antibacterial activity.

摘要

研究一种具有自激活能力且具有巨大产业化潜力的新型低成本、低损耗且可调节持续抗菌活性的食品包装薄膜具有重大的科技意义。在此,通过一步静电自组装制备了一种新型壳聚糖/带负电荷的石墨相氮化碳自激活生物纳米复合薄膜。首先,该薄膜在可见光下自激活时,对大肠杆菌的抗菌效率可达99.8±0.26%,对金黄色葡萄球菌的抗菌效率可达99.9±0.04%。其次,该薄膜能有效将蜜橘的货架期延长至24天。溶血和细胞实验测试证明该薄膜安全无毒。最后,低成本的带负电荷的石墨相氮化碳可改善纯壳聚糖薄膜的机械、热和疏水性能。这项工作可为制备具有优异可见光响应性能和可持续抗菌活性的低成本包装薄膜提供一条新途径。

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