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Superhydrophobic Bilayer Coating Based on Annealed Electrospun Ultrathin Poly(ε-caprolactone) Fibers and Electrosprayed Nanostructured Silica Microparticles for Easy Emptying Packaging Applications

机译:基于退火电纺超薄聚(ε-己内酯)纤维的超疏水双层涂层,用于易排空包装应用的电喷雾纳米结构二氧化硅微粒

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摘要

A coating rendering superhydrophobic properties to low-density polyethylene (LDPE) films used in packaging applications was herein generated by means of the electrohydrodynamic processing (EHDP) technique. To this end, electrospun ultrathin poly(ε-caprolactone) (PCL) fibers, followed by electrosprayed nanostructured silica (SiO2) microparticles, were deposited on top of the LDPE film. Various electrospinning and electrospraying times were tested and optimized followed by a thermal post-treatment to provide physical adhesion between the bilayer coating and the LDPE substrate. The morphology, hydrophobicity, permeance to limonene, and thermal stability of the resultant nanostructured coatings were characterized. It was observed that by controlling both the deposition time of the electrospun ultrathin PCL fibers and the electrosprayed SiO2 microparticles, as well as the conditions of the thermal post-treatment, effective superhydrophobic coatings were developed onto the LDPE films. The resultant multilayer presented a hierarchical micro/nanostructured surface with an apparent contact angle of 157° and a sliding angle of 8°. The addition of silica reduced, to some extent, the limonene (aroma) barrier, likely due to the increased surface-to-volume ratio, which allowed permeant sorption to occur but improved the thermal stability of the LDPE/PCL film. As a result, the developed multilayer system of LDPE/PCL/SiO2 has significant potential for use in easy-to-empty packaging applications of high water activity products.
机译:在本文中通过电液动力学加工(EHDP)技术产生了在本文中使用的用于低密度聚乙烯(LDPE)膜的超疏水性能。为此,沉积在LDPE薄膜的顶部上沉积电纺器超薄聚(ε-己内酯)(PCL)纤维,然后是电喷雾的纳米结构二氧化硅(SiO 2)微粒。测试和优化各种静电纺丝和电喷雾时间,然后进行热后处理,以提供双层涂层和LDPE基材之间的物理粘合。表征了所得纳米结构涂层的形态,疏水性,渗透到柠檬烯和热稳定性。观察到通过控制Electrom淘纺器纤维的沉积时间和电喷雾的SiO 2微粒以及热后处理的条件,在LDPE薄膜上产生有效的超疏水涂层。所得多层呈现具有157°的表观接触角的分层微/纳米结构表面,并且滑动角为8°。在一定程度上,二氧化硅的加入降低,可能由于增加的表面对体积比增加,这使得允许渗透吸附发生但改善了LDPE / PCL膜的热稳定性。结果,LDPE / PCL / SiO2的开发的多层系统具有显着的高水量产品易于空的包装应用的潜力。

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