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Active Nano Metal Oxide Coating for Bio-fouling Resistance

机译:活性纳米金属氧化物涂层用于生物污垢抗性

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Titanium is known for excellent corrosion resistance for the sea water-cooled condenser material but susceptible to biofilm formation and bio-fouling, leading to deterioration in the heat transfer properties. Present study involves an attempt to use nanotechnology based surface modification of titanium to improve the antibacterial property and thereby resistance to biofouling. Synthesis of zinc oxide (ZnO) nano structures on Ti by a simple wet chemical method was achieved with the formation of nano structures under mild conditions in the absence of any seed, catalysts or surfactants. These nano structures were characterized using Field emission scanning electron microscopy which showed nano needle like structures. Grazing Incidence X-ray diffraction pattern showed a Wurtzite phase ZnO with strong peak at (002), indicating nano structure growth along the c-axis. Laser Raman Spectroscopy studies also confirmed the presence of Wurtzite crystals of ZnO nano structures. The antibacterial activity of these ZnO coatings with respect to gram negative bacteria, Pseudomonas aeruginosa sp. was investigated qualitatively and quantitatively. Epifluorescence microscopy and total viable count analysis have confirmed that ZnO nanostructures on the titanium substrate provided antibacterial activity against Pseudomonas aeruginosa.
机译:钛以其对海水冷凝物材料的优异耐腐蚀性而闻名,但易于生物膜形成和生物污垢,导致传热性能劣化。目前的研究涉及尝试使用基于纳米技术的钛的表面改性,以改善抗菌性,从而抗生物污垢。通过在不含任何种子,催化剂或表面活性剂的情况下,在温和条件下形成纳米结构,实现了通过简单的湿化学方法对Ti的氧化锌(ZnO)纳米结构的合成。这些纳米结构的特征在于使用场发射扫描电子显微镜,其显示纳米针状结构。放牧入射X射线衍射图案显示诸如(002)的强峰具有强峰的紫立塔相ZnO,表明沿着C轴的纳米结构生长。激光拉曼光谱研究还证实了ZnO纳米结构的紫立岩晶体的存在。这些ZnO涂层关于革兰氏阴性细菌的抗菌活性,假单胞菌Aeruginosa Sp。定性和定量调查。渗流荧光显微镜和总活计数分析证实钛基底上的ZnO纳米结构提供了针对假单胞菌铜绿假单胞菌的抗菌活性。

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