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首页> 外文期刊>Thin Solid Films >Depth profiling of fluorine-doped diamond-like carbon (F-DLC) film: Localized fluorine in the top-most thin layer can enhance the non-thrombogenic properties of F-DLC
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Depth profiling of fluorine-doped diamond-like carbon (F-DLC) film: Localized fluorine in the top-most thin layer can enhance the non-thrombogenic properties of F-DLC

机译:掺氟类金刚石碳(F-DLC)膜的深度剖析:最顶层中的局部氟可以增强F-DLC的非血栓形成特性

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Fluorine-doped diamond-like carbon (F-DLC) has recently drawn a great deal of attention as a more non-thrombogenic coating than conventional DLC for blood-contacting medical devices. We conducted quantitative depth profiling of F-DLC film by X-ray photoelectron spectroscopy (XPS) in order to elucidate the effects of fluorine and fluorine distribution in F-DLC film in connection with the prevention of surface blood adhesion. F-DLC films were prepared on silicon substrates using the radio frequency plasma enhanced chemical vapor deposition method, and the thickness of films was ~50 nm. 50-nm-thick F-DLC film samples were etched at 10-nm thickness intervals using argon plasma, and each surface was examined by XPS. Thereafter, each etched film layer was incubated with platelet-rich plasma isolated from human whole blood, and the platelet-covered area per unit area was evaluated for each surface. XPS spectra showed the localization of doped fluorine in the topmost thin layer of the film. Platelet-covered areas represented progressively larger portions of the surfaces of deeper etched layers, corresponding to the decreasing fluorine content in such sample surfaces. These results indicate that the localized fluorine in the top-most thin layer is one of the key factors in the promotion of the non-thrombogenicity of F-DLC film.
机译:掺氟类金刚石碳(F-DLC)作为一种非血栓形成涂层,比用于血液接触医疗设备的常规DLC更具非血栓性,因此最近引起了广泛关注。我们通过X射线光电子能谱(XPS)进行了F-DLC膜的定量深度剖析,以阐明F-DLC膜中的氟和氟分布对防止表面血液粘附的影响。采用射频等离子体增强化学气相沉积法在硅衬底上制备了F-DLC薄膜,薄膜厚度为〜50 nm。使用氩等离子体以50 nm的厚度间隔蚀刻厚度为50 nm的F-DLC膜样品,并通过XPS检查每个表面。之后,将各蚀刻膜层与从人全血分离的富含血小板的血浆一起温育,对每个表面评价单位面积的血小板覆盖面积。 XPS光谱显示掺杂的氟在薄膜的最薄层中的定位。覆盖血小板的区域代表了较深蚀刻层表面的逐渐增大的部分,与此类样品表面中的氟含量降低相对应。这些结果表明,最顶层薄层中的局部氟是促进F-DLC膜非血栓形成性的关键因素之一。

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