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Physicochemical and Biological Activity Analysis of Low-Density Polyethylene Substrate Modified by Multi-Layer Coatings Based on DLC Structures, Obtained Using RF CVD Method

机译:基于DLC结构的多层涂层改性低密度聚乙烯基材的物理化学和生物活性分析,采用RF CVD法得到

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摘要

In this paper, the surface properties and selected mechanical and biological properties of various multi-layer systems based on diamond-like carbon structure deposited on low-density polyethylene (LDPE) substrate were studied. Plasma etching and layers deposition (incl. DLC, N-DLC, Si-DLC) were carried out using the RF CVD (radio frequency chemical vapor deposition) method. In particular, polyethylene with deposited N-DLC and DLC layers in one process was characterized by a surface hardness ca. seven times (up to ca. 2.3 GPa) higher than the unmodified substrate. Additionally, its surface roughness was determined to be almost two times higher than the respective plasma-untreated polymer. It is noteworthy that plasma-modified LDPE showed no significant cytotoxicity in vitro. Thus, based on the current research results, it is concluded that a multilayer system (based on DLC coatings) obtained using plasma treatment of the LDPE surface can be proposed as a prospective solution for improving mechanical properties while maintaining biocompatibility.
机译:本文研究了基于沉积在低密度聚乙烯(LDPE)基板上的类金刚石状碳结构的各种多层系统的表面性质和所选机械和生物学。使用RF CVD(射频化学气相沉积)方法进行等离子体蚀刻和层沉积(包括DLC,N-DLC,Si-DLC)。特别地,通过表面硬度Ca以沉积的N-DLC和DLC层的聚乙烯特征。比未修饰的基材高七次(最多CA. 2.3 GPA)。另外,其表面粗糙度确定几乎比相应的等离子体 - 未处理的聚合物高的两倍。值得注意的是,血浆改性的LDPE在体外显示出显着的细胞毒性。因此,基于目前的研究结果,得出结论:可以提出使用LDPE表面的等离子体处理获得的多层系统(基于DLC涂层)作为用于改善机械性能同时保持生物相容性的前瞻性溶液。

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