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Oxygen Gas and UV Barrier Properties of Nano-ZnO-Coated PET and PHBHHx Materials Fabricated by Ultrasonic Spray-Coating Technique

机译:超声喷涂技术制造的纳米ZnO涂层PET和PHBHHX材料的氧气和UV阻隔性能

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摘要

Ultrasonic spray-coating (USSC)—a wet chemical deposition method to deposit ultrathin (down to 20 nm) coatings—is being applied as a promising alternative deposition method for functional coatings due to an economical, simple, and precise coating process with easy control over its operating parameters. In this research, zinc oxide nanoparticles (ZnO NPs) were ultrasonically spray-coated on commercial-grade polyethylene terephthalate (PET) and poly(3-hydroxybutyrate-co-3-hydroxyhexanoate) (PHBHHx) films. The most suitable parameters for the ink composition, the ultrasonic spray-coating process, and the number of coating passes (up to 50×) were selected on the basis of a series of experiments. The oxygen gas barrier properties in terms of the oxygen transmission rate (OTR) of neat PET, and 3×, 5×, 10×, and 50× ZnO NP-coated PET and PHBHHx substrates were investigated. The OTR values for neat PET, and 3×, 5×, and 10× ZnO NP-coated PET substrates were found to be the same; however, a 5% reduction in OTR for 50× ZnO NP-coated PET substrate was observed compared to the neat PET substrate. No reduction in OTR was found for any above number of coating passes on PHBHHx substrates against the neat PHBHHx substrate. However, the ultraviolet (UV) tests of 3×, 5×, and 10× ZnO NP-coated PET and PHBHH× substrates revealed a significant decrease in percentage transmission for 10× coated PET and PHBHHx substrates as compared to their 3× and 5× ZnO NP-coated substrates, respectively. It was revealed from the study that the 50× ZnO NP coating of the PET substrate created a slight difference in OTR as compared to the reference substrate. However, the ultrasonic spray-coating method created a significant UV barrier effect for 3×, 5×, and 10× ZnO NP-coated PET and PHBHHx substrates, which demonstrates that the optimized coating method cannot be used to create a high oxygen barrier but can certainly be applied for UV barrier applications in food packaging. It is concluded that ultrasonic spray deposition of ZnO NPs on PET and PHBHHx materials has shown promising results for UV barrier properties, demonstrating the advantages of using this method compared to other coating methods with regard to cost-effectiveness, precise coating, and better process control.
机译:超声波喷涂(USSC)-A湿化学沉积方法将超薄(下至20nm)涂层存放 - 由于经济,简单,精确的涂层工艺而易于控制的功能涂层的有希望的替代沉积方法在其操作参数上。在该研究中,氧化锌纳米颗粒(ZnO NPS)在商业级聚乙烯对苯二甲酸乙二醇酯(PET)和聚(3-羟基丁酸酯-CO-3-羟基己酸酯)(PHBHHHX)薄膜上进行超声波喷涂。基于一系列实验,选择最合适的油墨组合物,超声波喷涂工艺和涂层涂层的数量(最多50×)。研究了整齐PET的氧传输速率(OTR)和3×,5×,10×和50×ZnO NP涂覆PET和PHBHHX底物的氧气阻隔性能。发现纯PET的OTR值,以及3×,5×和10×ZnO NP涂层PET基板的值相同;然而,与整齐的PET基材相比,观察到50×ZnO NP涂覆的PET基板的5%的5%。对纯PHBHHX衬底的PHBHHX基材上的任何上述涂层没有发现OTR的减少。然而,3×,5×和10×ZnO NP涂覆PET和PHBHH×底物的紫外(UV)试验显示出10×涂层PET和PHBHHX基材的百分比变速器的显着降低,与其3×和5相比×ZnO NP涂覆的基材。从研究中揭示了PET基板的50×ZnO NP涂层在与参考衬底相比,在OTR中产生轻微差异。然而,超声波喷涂方法为3×,5×和10×ZnO NP涂覆的PET和PHBHHX基材产生了显着的UV阻挡效果,这表明优化的涂布方法不能用于产生高氧气屏障但是肯定可以应用于食品包装中的UV屏障应用。得出结论,ZnO NPS对PET和PHBHHX材料的超声波喷射沉积表明了UV阻隔性能的有希望的结果,展示了与成本效益,精确涂层和更好的过程控制相比使用该方法的优点。

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