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Design of modified plastic surfaces for antimicrobial applications: Impact of ionizing radiation on the physical and mechanical properties of polypropylene

机译:用于抗菌应用的改性塑料表面设计:电离辐射对聚丙烯物理和机械性能的影响

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摘要

Surface modification of polypropylene (PP) sheets was carried out by radiation induced graft polymer- ization of hydrophilic functional molecules such as N,N-dimethylacrylamide (DMA) and [2-methacry- loyloxy)ethyl] trimethylammonium chloride, which is a quaternary ammonium salt (QAS). Polypropylene sheets were activated prior to the grafting reaction by using electron beam radiation. The changes in morphology, crystallinity and tensile parameters like deformation and stress at yield and deformation at break of PP after irradiation were investigated. The results showed that a minor crystalline reorganization takes place during the irradiation of PP at 100 kGy. The grafting has been observed to be strongly dependent on the monomer dilution in the reaction medium. After grafting of QAS (40%) and DMA (20%) it was possible to develop highly hydrophilic surfaces (water contact angle comprised between 30 and 411). The surfaces of virgin, irradiated and grafted PP were studied using polarized optical microscopy (POM) and scanning electron microscopy (SEM). Spherical particles (i.e. polystyrene or silica beads) adhering to the modified samples were studied according to the surface parameters. Adhesion tests confirmed the strong influence of substrate type (mainly hydrophilicity and roughness) and to a lesser extent underlined the role of electrostatic interactions for the design of plastic surfaces for antimicrobial applications.
机译:聚丙烯(PP)片材的表面改性是通过亲水性分子(如N,N-二甲基丙烯酰胺(DMA)和氯化[2-甲基丙烯酰氧基)乙基]三甲基氯化铵的辐射诱导接枝聚合进行的,后者是季铵盐)盐(QAS)。在接枝反应之前,通过使用电子束辐射将聚丙烯片材活化。研究了辐照后PP的形貌,结晶度和拉伸参数的变化,如屈服变形和屈服应力以及PP的断裂变形。结果表明,在100 kGy的PP辐射过程中发生了较小的晶体重组。已经观察到接枝在很大程度上取决于反应介质中单体的稀释度。在接枝QAS(40%)和DMA(20%)之后,可以形成高度亲水的表面(水接触角介于30和411之间)。使用偏光光学显微镜(POM)和扫描电子显微镜(SEM)研究了原始,辐照和接枝PP的表面。根据表面参数研究了附着在改性样品上的球形颗粒(即聚苯乙烯或二氧化硅珠)。附着力测试证实了基材类型的强烈影响(主要是亲水性和粗糙度),并且在较小程度上强调了静电相互作用在抗菌塑料表面设计中的作用。

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