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Double dielectric barrier (DBD) plasma-assisted deposition of chemical stabilized nanoparticles on polyamide 6,6 and polyester fabrics

机译:双介电屏障(DBD)等离子体辅助沉积化学稳定纳米颗粒在聚酰胺6,6和聚酯织物上的化学稳定纳米粒子

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The development of new multifunctional textiles containing nanoparticles (NPs) has a special interest in several applications for pharmaceutical and medical products. Cu, Zn and Ag are the most promising antimicrobial NPs, exhibiting strong antibacterial activities. However, most of antimicrobial textiles coated with NPs are not able to perform a controlled release of NPs because of the high degree of aggregation. The aim of this study is to assess the effect of NPs stabilizers such as citrate, alginate and polyvinyl alcohol (PVA) in Cu, Zn and Ag NPs dispersions. The obtained dispersions were used to develop a new class of antibacterial NPs coatings onto polyamide 6,6 (PA66) and polyester fabrics (PES) by Double Dielectric Barrier (DBD) plasma discharge. Dynamic light scattering (DLS) was used to evaluate the best dispersing agent in terms of size, polydispersity index and zeta potential. Coating efficiency was evaluated by SEM, XPS and FTIR. The washing fastness of the coatings developed was also tested. The results show that the best dispersions were obtained using 2.5% of citrate for ZnO, 5% Alginate for Cu and 2.5% alginate for Ag NPs. SEM, XPS and FTIR analysis shows that DBD is an efficient deposition technique only for Ag and Cu NPs and that better perform in PA66 than PES fabric. The DBD deposition in air display similar results in term of NPS deposition of usually more efficient plasma jets using carrier gas such as N2 and Ar.
机译:含有纳米颗粒(NPS)的新型多功能纺织品的发展对药品和医疗产品的几种应用具有特别兴趣。 Cu,Zn和Ag是最有前景的抗菌NPS,表现出强烈的抗菌活性。然而,由于高度的聚集程度,涂有NPS的大多数抗微生物纺织品不能进行NPS的受控释放。本研究的目的是评估NPS稳定剂如柠檬酸盐,藻酸盐和聚乙烯醇(PVA)在Cu,Zn和Ag NPS分散体中的影响。所获得的分散体用于通过双介电屏障(DBD)等离子体放电,将新类别的抗菌NPS涂层和聚酯织物(PE)进行聚酰胺6,6(PA66)和聚酯织物(PE)。动态光散射(DLS)用于评估最佳分散剂,在大小,多分散指数和Zeta电位方面。通过SEM,XPS和FTIR评估涂料效率。还测试了涂层的洗涤牢度。结果表明,使用2.5%的ZnO柠檬酸盐获得最佳分散体,用于Cu的5%藻酸盐和2.5%藻酸盐用于Ag NPS。 SEM,XPS和FTIR分析表明,DBD是仅适用于AG和Cu NP的有效沉积技术,并且比PES面料更好地执行PA66。空气显示器中的DBD沉积类似于使用诸如N2和AR的载气通常更有效的等离子体喷射的NPS沉积的术语。

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