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硅和氮掺杂类金刚石碳涂层的细菌附着与去除特性

Bacterial attachment and removal properties of silicon- and nitrogen-doped diamond-like carbon coatings.

作者信息

Zhao Qi, Su Xueju, Wang Su, Zhang Xiaoling, Navabpour Parnia, Teer Dennis

机构信息

Department of Mechanical Engineering, University of Dundee, Dundee, UK.

出版信息

Biofouling. 2009;25(5):377-85. doi: 10.1080/08927010902838426.

Abstract

Si- and N-doped diamond-like carbon (DLC) coatings with various Si and N contents were deposited on glass slides using magnetron sputter ion-plating and plasma-enhanced chemical vapour deposition. Surface energy analysis of the DLC coatings revealed that with increasing Si content, the electron acceptor gamma(s)(+) value decreased while the electron donor gamma(s)(-) value increased. The antifouling property of DLC coatings was evaluated with the bacterium, Pseudomonas fluorescens, which is one of the most common microorganisms forming biofilms on the surface of heat exchangers in cooling water systems. P. fluorescens had a high value of the gamma(s)(-) component (69.78 mN m(-1)) and a low value of the gamma(s)(+) component (5.97 mN m(-1)), and would be negatively charged with the zeta potential of -16.1 mV. The experimental results showed that bacterial removal by a standardised washing procedure increased significantly with increasing electron donor gamma(s)(-) values and with decreasing electron acceptor gamma(s)(+) values of DLC coatings. The incorporation of 2%N into the Si-doped DLC coatings further significantly reduced bacterial attachment and significantly increased ease of removal. The best Si-N-doped DLC coatings reduced bacterial attachment by 58% and increased removal by 41%, compared with a silicone coating, Silastic T2. Bacterial adhesion strength on the DLC coatings is explained in terms of thermodynamic work of adhesion.

摘要

采用磁控溅射离子镀和等离子体增强化学气相沉积法,在载玻片上沉积了具有不同硅和氮含量的硅氮掺杂类金刚石碳(DLC)涂层。对DLC涂层进行表面能分析发现,随着硅含量的增加,电子受体γ(s)(+)值降低,而电子供体γ(s)(-)值增加。用荧光假单胞菌对DLC涂层的防污性能进行了评估,荧光假单胞菌是在冷却水系统热交换器表面形成生物膜的最常见微生物之一。荧光假单胞菌的γ(s)(-)组分值较高(69.78 mN m(-1)),γ(s)(+)组分值较低(5.97 mN m(-1)),其ζ电位为 -16.1 mV,带负电荷。实验结果表明,随着DLC涂层电子供体γ(s)(-)值的增加和电子受体γ(s)(+)值的降低,通过标准化清洗程序去除细菌的效果显著提高。在掺硅DLC涂层中掺入2%的氮,进一步显著减少了细菌附着,并显著提高了去除的 ease of(此处原文可能有误,推测是ease of removal的意思,即去除的容易程度)。与硅酮涂层Silastic T2相比,最佳的硅氮掺杂DLC涂层使细菌附着减少了58%,去除率提高了41%。根据粘附的热力学功来解释细菌在DLC涂层上的粘附强度。

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