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首页> 外文期刊>ACS applied materials & interfaces >Fabrication and Release Behavior of Microcapsules with Double-Layered Shell Containing Clove Oil for Antibacterial Applications
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Fabrication and Release Behavior of Microcapsules with Double-Layered Shell Containing Clove Oil for Antibacterial Applications

机译:微胶囊与含有丁香油的双层外壳的微胶囊的制造和释放行为,用于抗菌应用

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摘要

In this study, double-layer polyurethane/poly(urea-formaldehyde) (PU/PUF) shell microcapsules containing clove oil with antibacterial properties were successfully synthesized via in situ and interfacial polymerization reactions in an oil-in-water emulsion. The morphology, core-shell structure, and composition of the microcapsules were investigated systematically. Additionally, the release behaviors of microcapsules synthesized under different reaction parameters were studied. It was found that the release rate of clove oil can be controlled by tuning the amount of PU reactants and the length of PUF deposition time. The release profile fitted well against the Baker-Lonsdale model, which indicates diffusion as the primary release mechanism. Experimental results based on the ASTM E2315 time kill test revealed that the fabricated microcapsules have great antibacterial activities against the marine bacteria Vibrio coralliilyticus, Escherichia coli, Exiguobacterium aestuarii, and marine biofilm-forming bacteria isolated from the on-site contaminated samples, showing their great potential as an eco-friendly solution to replace existing toxic antifouling agent.
机译:在该研究中,通过原位和水包油乳液中的界面聚合反应成功地合成了含有抗菌性质的丁香油的双层聚氨酯/聚(ULEA-甲醛)(PU / PUF)壳体微胶囊。系统地研究了微胶囊的形态,核心壳结构和组成。另外,研究了在不同反应参数下合成的微胶囊的释放行为。发现丁香油的释放速率可以通过调节PU反应物的量和PUF沉积时间的长度来控制。释放型材孔孔牢固地靠在面板 - Lonsdale模型上,这表示作为主要释放机制的扩散。基于ASTM E2315的实验结果杀死测试显示,制造的微胶囊对海洋细菌弧菌Coralliilyticus,大肠杆菌,Exigubacteriums的抗菌活性有很大的抗菌活性,以及​​从现场污染的样品中分离的海洋生物膜形成细菌,显示出他们的伟大潜在作为一种替代现有有毒防污剂的环保解决方案。

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