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Fast Surface Hydrophilization via Atmospheric Pressure Plasma Polymerization for Biological and Technical Applications

机译:用于生物和技术应用的常压等离子体聚合快速表面亲水化

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摘要

Polymeric surfaces can benefit from functional modifications prior to using them for biological and/or technical applications. Surfaces considered for biocompatibility studies can be modified to gain beneficiary hydrophilic properties. For such modifications, the preparation of highly hydrophilic surfaces by means of plasma polymerization can be a good alternative to classical wet chemistry or plasma activation in simple atomic or molecular gasses. Atmospheric pressure plasma polymerization makes possible rapid, simple, and time-stable hydrophilic surface preparation, regardless of the type and properties of the material whose surface is to be modified. In this work, the surface of polypropylene was coated with a thin nanolayer of plasma-polymer which was prepared from a low-concentration mixture of propane-butane in nitrogen using atmospheric pressure plasma. A deposition time of only 1 second was necessary to achieve satisfactory hydrophilic properties. Highly hydrophilic, stable surfaces were obtained when the deposition time was 10 seconds. The thin layers of the prepared plasma-polymer exhibit highly stable wetting properties, they are smooth, homogeneous, flexible, and have good adhesion to the surface of polypropylene substrates. Moreover, they are constituted from essential elements only (C, H, N, O). This makes the presented modified plasma-polymer surfaces interesting for further studies in biological and/or technical applications.
机译:在将聚合物表面用于生物学和/或技术应用之前,聚合物表面可以从功能修饰中受益。可以对考虑用于生物相容性研究的表面进行改性,以获得有益的亲水性。对于这样的修饰,通过等离子体聚合制备高亲水性表面可以是传统的湿化学或简单的原子或分子气体中的等离子体活化的良好替代。大气压等离子体聚合使快速,简单和稳定时间的亲水性表面制备成为可能,而与要对其表面进行改性的材料的类型和性能无关。在这项工作中,聚丙烯的表面涂有一层等离子聚合物的纳米薄层,该层由低浓度的丙烷-丁烷在氮气中使用大气压等离子体制备而成。为了获得令人满意的亲水性,仅需要1秒的沉积时间。当沉积时间为10秒时,获得了高度亲水,稳定的表面。所制得的等离子聚合物的薄层具有高度稳定的润湿性能,它们是光滑,均质,柔性的,并且与聚丙烯基材的表面具有良好的粘合性。而且,它们仅由基本元素(C,H,N,O)构成。这使得提出的改性的等离子聚合物表面对于生物学和/或技术应用中的进一步研究很有趣。

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