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Plasma treatment of the surface of poly(hydroxybutyrate) foil and non-woven fabric and assessment of the biological properties

机译:等离子体处理聚羟基丁酸酯箔和无纺布的表面并评估其生物学特性

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This paper deals with the poly(hydroxybutyrate) (PHB, foil and fabric) surface modification, characterization and the view of its possible application. The influence of Ar plasma treatment on surface polarity was studied. The changes of the surface parameters were determined immediately after treatment and after annealing related to plasma power, treatment time and heating. These surface-induced differences were studied by different analytic methods: polarity (wettability) was studied by contact angle measurement and surface energy calculation, the surface morphology analysis was done by atomic force microscopy and for determination of chemical composition of surface layer the XPS analysis was used. It was found that after plasma treatment the surface energy of both PHB foil and non-woven fabric significantly increased. PHB non-woven fabric exhibited almost immeasurable contact angle after the plasma treatment. The wettability of both types of PHB substrates after heating was completely inversed. The significant change in roughness of PHB foil was found. After the plasma treatment, the material ablation was determined, which was also connected with surface chemical changes, thus the surface was found to be corrugated. The heating procedure induced "little" crystallites on the surface. Positive effect of PHB foil modifications on surface biocompatibility was confirmed. The biocompatibility was also preserved when thermal stress was applied. Silver nanolayer sputtered on PHB fabric surface induced strong antimicrobial properties. (C) 2015 Elsevier B.V. All rights reserved.
机译:本文研究了聚羟基丁酸酯(PHB,箔和织物)的表面改性,表征及其可能应用的观点。研究了氩等离子体处理对表面极性的影响。在处理之后以及与等离子体功率,处理时间和加热有关的退火之后立即确定表面参数的变化。通过不同的分析方法研究了这些表面诱导的差异:通过接触角测量和表面能计算研究了极性(润湿性),通过原子力显微镜进行了表面形态分析,并且为了确定表面层的化学组成,使用了XPS分析。用过的。发现在等离子体处理之后,PHB箔和无纺布的表面能均显着增加。在等离子处理后,PHB无纺布的接触角几乎无法测量。加热后,两种类型的PHB基材的润湿性完全相反。发现PHB箔的粗糙度有显着变化。等离子处理后,确定材料烧蚀,这也与表面化学变化有关,因此发现表面是波纹状的。加热程序在表面上引起“少量”微晶。证实了PHB箔修饰对表面生物相容性的积极作用。当施加热应力时,也保持了生物相容性。在PHB织物表面上溅射的纳米银层具有很强的抗菌性能。 (C)2015 Elsevier B.V.保留所有权利。

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