Construction of antibacterial-enhanced 2D ZnO@ZIF-8 nanocomposites based on synergistic antimicrobial mechanisms and application in maize long-term storage

ES评分 0

DOI https://doi.org/10.1016/j.foodchem.2025.146542
刊名
年,卷(期) 2025, 495(3)
作者
作者单位 河南工业大学

Abstract
The prevention of bacterial growth and mold during the long-term storage of maize is a long-standing concern. This study introduced a synergistic antibacterial enhanced ZnO nanocomposite prepared by a top-down template method based on self-assembly mechanism. The results showed that 2D ZnO@ZIF-8 nanocomposites, with uniform ZnO encapsulation in dodecahedral ZIF-8 frameworks, exhibiting high surface area and microporous structure. The nanocomposites demonstrated synergistic antibacterial effects through sheet morphology, multisite activity, and ROS generation, the inhibition rates against Staphylococcus aureus, Escherichia coli, Aspergillus flavus, Aspergillus niger, and Penicillium citrinum were increased by 20.65 %, 38.87 %, 39.91 %, 38.55 %, and 40.34 %, respectively, compared with ZnO. During 42-day simulation storage, it reduced maize surface microbes by 99.5 %, while maintaining safe Zn2+ levels. The treatment suppressed toxigenic fungi, Fusarium, Meyerozyma, Penicillium, and effectively controlled A. flavus without altering species richness. This work presented an ideal ZnO-based antibacterial nanomaterial for long-term safe storage of maize.
KeyWord
Maize storage Microbial inhibition ZnO nanocomposites Synergistic antibacterial mechanism
基金项目
页码 -
  • 参考文献
  • 相关文献
  • 引用本文

Xu S-Y, Mei C-S, Zhou K-Y, Xiao F, Zhang M, Wu Q, Zhang Y-R, Zhang D-D. Construction of antibacterial-enhanced 2D ZnO@ZIF-8 nanocomposites based on synergistic antimicrobial mechanisms and application in maize long-term storage [J]. Food Chemistry. 2025; 495; (3). - .

  • 文献评论

相关学者

相关机构