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Electrospinning repellents in polyvinyl alcohol-nanofibres for obtaining mosquito-repelling fabrics

机译:聚乙烯醇-纳米纤维中的静电纺丝驱避剂用于获得驱蚊织物

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摘要

Recently, the use of repellents for preventing the transmission of mosquito-borne diseases is getting increasingly more attention. However, most of the current repellents are volatile in nature and must be frequently re-applied as their efficacy is only limited to a short period of time. Therefore, a slow release and abrasion-resistant mechanism is needed for prolonging the protection time of the repellents. The focus of this study is on the direct micro-encapsulation of repellents from an emulsion and integration of already encapsulated repellents into nanofibres via electrospinning. Different repellents were electrospun in polyvinyl alcohol (PVA) nanofibrous structures, namely p-menthane-3,8-diol micro-capsules, permethrin, chilli and catnip oil. The repellents were successfully incorporated in the nanofibres and the tensile properties of the resulting samples did not have a significant change. This means that the newly created textiles were identical to current PVA nanofibrous textiles with the added benefit of being mosquito repellent. Principally, all incorporated repellents in the nanofibrous structures showed a significantly reduced number of mosquito landings compared to the control. Consequently, the currently described method resulted in a new and very effective repelling textile material that can be used in the prevention against mosquito-associated diseases.
机译:近来,使用驱虫剂来防止蚊子传播的疾病越来越受到关注。然而,大多数当前的驱虫剂本质上是挥发性的,并且由于其功效仅限于短时期,因此必须经常重新使用。因此,需要一种缓慢释放和耐磨的机制来延长驱避剂的保护时间。这项研究的重点是将乳剂中的驱虫剂直接微囊化,以及通过静电纺丝将已囊封的驱虫剂整合到纳米纤维中。将不同的驱避剂静电纺丝在聚乙烯醇(PVA)纳米纤维结构中,即对薄荷3,8-二醇微胶囊,苄氯菊酯,辣椒和猫薄荷油。驱虫剂已成功掺入纳米纤维中,所得样品的拉伸性能没有明显变化。这意味着新创建的纺织品与当前的PVA纳米纤维纺织品相同,另外具有驱蚊功能。原则上,与对照相比,纳米纤维结构中所有掺入的驱虫剂均显示出明显降低的蚊虫着陆数量。因此,当前描述的方法产生了一种新的并且非常有效的排斥纺织品材料,其可以用于预防与蚊子相关的疾病。

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