Castro-Mayorga Jinneth Lorena, Fabra Maria Jose, Cabedo Luis, Lagaron Jose Maria
Novel Materials and Nanotechnology Group, IATA-CSIC, 46980 Valencia, Spain.
Polymers and Advanced Materials Group (PIMA), Universitat Jaume I, 12071 Castellón, Spain.
Nanomaterials (Basel). 2016 Dec 29;7(1):4. doi: 10.3390/nano7010004.
Electro-hydrodynamic processing, comprising electrospraying and electrospinning techniques, has emerged as a versatile technology to produce nanostructured fiber-based and particle-based materials. In this work, an antimicrobial active multilayer system comprising a commercial polyhydroxyalkanoate substrate (PHA) and an electrospun PHA coating containing in situ-stabilized silver nanoparticles (AgNPs) was successfully developed and characterized in terms of morphology, thermal, mechanical, and barrier properties. The obtained materials reduced the bacterial population of below the detection limits at very low silver loading of 0.002 ± 0.0005 wt %. As a result, this study provides an innovative route to generate fully renewable and biodegradable materials that could prevent microbial outbreaks in food packages and food contact surfaces.
包括电喷雾和电纺丝技术在内的电流体动力学加工,已成为一种用于生产基于纳米结构纤维和颗粒材料的通用技术。在这项工作中,成功开发了一种抗菌活性多层系统,该系统由商业聚羟基脂肪酸酯基材(PHA)和含有原位稳定银纳米颗粒(AgNP)的电纺PHA涂层组成,并对其形态、热性能、机械性能和阻隔性能进行了表征。在银负载量非常低(0.002±0.0005 wt%)的情况下,所获得的材料将细菌数量降低到检测限以下。因此,本研究提供了一条创新途径,以生成完全可再生和可生物降解的材料,可防止食品包装和食品接触表面的微生物爆发。