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通过射频等离子体增强化学气相沉积和磁控溅射相结合获得的多层血液相容性类金刚石碳涂层。

Multi-layer haemocompatible diamond-like carbon coatings obtained by combined radio frequency plasma enhanced chemical vapor deposition and magnetron sputtering.

作者信息

Popa A C, Stan G E, Husanu M A, Pasuk I, Popescu I D, Popescu A C, Mihailescu I N

机构信息

Army Centre for Medical Research, 020012, Bucharest, Romania.

出版信息

J Mater Sci Mater Med. 2013 Dec;24(12):2695-707. doi: 10.1007/s10856-013-5026-y. Epub 2013 Aug 13.

Abstract

Radio-frequency Plasma Enhanced Chemical Vapour Deposition (in different methane dilutions) was used to synthesize adherent and haemocompatible diamond-like carbon (DLC) films on medical grade titanium substrates. The improvement of the adherence has been achieved by interposing a functional buffer layer with graded composition TixTiC1-x (x = 0-1) synthesized by magnetron co-sputtering. Bonding strength values of up to 67 MPa have been measured by pull-out tests. Films with different sp(3)/sp(2) ratio have been obtained by changing the methane concentration in the deposition chamber. Raman spectroscopy, X-ray photoelectron spectroscopy and X-ray diffraction were employed for the physical-chemical characterization of the samples. The highest concentration of sp(3)-C (87 %), corresponding to a lower DLC surface energy (28.7 mJ/m(2) ), was deposited in a pure methane atmosphere. The biological response of the DLC films was assayed by a state-of-the-art biological analysis method (surface enhanced laser desorption/ionization-time of flight mass spectroscopy), in conjunction with other dedicated testing techniques: Western blot and partial thromboplastin time. The data support a cause-effect relationship between sp(3)-C content, surface energy and coagulation time, as well as between platelet-surface adherence properties and protein adsorption profiles.

摘要

采用射频等离子体增强化学气相沉积法(在不同甲烷稀释度下)在医用级钛基底上合成附着性良好且具有血液相容性的类金刚石碳(DLC)薄膜。通过插入由磁控共溅射合成的具有梯度成分TixTiC1-x(x = 0 - 1)的功能缓冲层,实现了附着力的提高。通过拉伸试验测得的结合强度值高达约67 MPa。通过改变沉积室中的甲烷浓度,获得了具有不同sp(3)/sp(2)比率的薄膜。采用拉曼光谱、X射线光电子能谱和X射线衍射对样品进行物理化学表征。在纯甲烷气氛中沉积的sp(3)-C浓度最高(约87%),对应的DLC表面能较低(28.7 mJ/m²)。采用先进的生物分析方法(表面增强激光解吸/电离飞行时间质谱)以及其他专门的测试技术(蛋白质印迹法和部分凝血活酶时间)对DLC薄膜的生物反应进行了测定。数据支持了sp(3)-C含量、表面能与凝血时间之间以及血小板-表面粘附特性与蛋白质吸附谱之间的因果关系。

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