INESCOP, Footwear Research Institute , 3600 Elda (Alicante) , Spain.
J Microencapsul. 2014;31(2):176-83. doi: 10.3109/02652048.2013.824512. Epub 2013 Aug 13.
The aim of this study was to develop footwear materials with antimicrobial properties using microencapsulated Tea Tree oil (TTO) as a natural biocide. For that purpose, gelatine-carboxymethylcellulose based microcapsules containing TTO were synthesised by a complex coacervation process. Furthermore, the influence of the gelatine (G)/sodium carboxymethylmethyl cellulose (CMC) ratio (G/C) on the microcapsule properties, as well as in the microencapsulation oil efficiency, was evaluated. The microcapsules were characterised by different experimental techniques and applied to footwear materials (leather and textile) to evaluate their performance. The microcapsule durability under different conditions, such as rubbing and ironing, was analysed in order to simulate shoe manufacturing and shoe wearing. The properties of the microcapsules obtained by complex coacervation, using gelatine and sodium carboxymethylcellulose as shell-forming polymers, are determined by the ratio between those two polymers (G/C). The results obtained showed a notable effect of G/C ratio on the formation of the coacervate during the synthesis process and also on the encapsulation efficiency of the antimicrobial oil, with the optimal value for the G/C ratio being around 10.
本研究旨在开发具有抗菌性能的鞋材,使用微封装的茶树油(TTO)作为天然杀菌剂。为此,通过复凝聚工艺合成了含有 TTO 的明胶-羧甲基纤维素基微胶囊。此外,还评估了明胶(G)/羧甲基纤维素钠(CMC)比例(G/C)对微胶囊性能以及包封油效率的影响。通过不同的实验技术对微胶囊进行了表征,并将其应用于鞋类材料(皮革和纺织品),以评估其性能。为了模拟制鞋和穿鞋的过程,分析了微胶囊在摩擦和熨烫等不同条件下的耐久性。使用明胶和羧甲基纤维素钠作为壳形成聚合物的复凝聚法获得的微胶囊的性质取决于这两种聚合物的比例(G/C)。结果表明,G/C 比对合成过程中凝聚体的形成以及抗菌油的包封效率有显著影响,G/C 比的最佳值约为 10。