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使用铜纳米薄膜对钛进行表面改性以控制生物污染。

Surface modification of titanium using nanothin films of copper for biofouling control.

作者信息

Vishwakarma Vinita, Manoharan N, George R P, Dash S, Kamruddin M, Tyagi A K, Daya R K

机构信息

Sathyabama University, Chennai 600119, India.

出版信息

J Nanosci Nanotechnol. 2009 Sep;9(9):5480-3. doi: 10.1166/jnn.2009.1180.

Abstract

Biofouling is one of the major impediment in the use of titanium, which is otherwise excellent material with respect to corrosion resistance and mechanical properties, for seawater-cooled condensers of power plants. The routine chlorination treatment and sponge ball cleaning may not be successful to keep the titanium condenser tube clean over a period extending to years. This brings into focus the relevance of surface modification of titanium to improve the antimicrobial properties, which can effectively supplement the present treatment programmes. In this study antimicrobial thin film of copper (Cu) is developed on titanium surfaces, as copper is known to be very toxic to microorganisms and effectively kills most of the microbes by blocking the respiratory enzyme system. The preparation of nanocrystalline thin films of copper on titanium surfaces was done by pulsed DC magnetron-sputtering technique. Then this thin film was characterized using Glancing Incidence X-ray Diffraction (GIXRD) and Atomic Force Microscopy (AFM). Antimicrobial properties of these specimens were evaluated by exposure studies in seawater. Results showed two order decrease in the bacterial density on copper coated surface and epifluorescence micrographs depicted very few fluorescing cells and no biofilm formation clearly demonstrating the superior antibacterial capability of this nanocrystalline copper thin film.

摘要

生物污垢是在发电厂海水冷却冷凝器中使用钛的主要障碍之一,而钛在耐腐蚀性和机械性能方面是一种出色的材料。常规的氯化处理和海绵球清洗可能无法在长达数年的时间内成功保持钛冷凝器管的清洁。这凸显了钛表面改性以提高抗菌性能的重要性,这可以有效补充当前的处理方案。在本研究中,在钛表面制备了铜(Cu)抗菌薄膜,因为已知铜对微生物具有很强的毒性,并且通过阻断呼吸酶系统有效地杀死大多数微生物。通过脉冲直流磁控溅射技术在钛表面制备了纳米晶铜薄膜。然后使用掠入射X射线衍射(GIXRD)和原子力显微镜(AFM)对该薄膜进行表征。通过在海水中的暴露研究评估了这些样品的抗菌性能。结果表明,铜涂层表面的细菌密度降低了两个数量级,落射荧光显微镜照片显示荧光细胞极少,且没有生物膜形成,清楚地证明了这种纳米晶铜薄膜具有优异的抗菌能力。

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