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Hydrophilic, antibacterial and photocatalytic properties of TiO2 composite films modified by the methods of N+ ion implantation and doping of CNTs

机译:通过N +离子注入方法改性TiO2复合薄膜的亲水性,抗菌和光催化性能和CNTs的掺杂方法

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The carbon nanotubes (CNTs) doped TiO2 films were synthesized using the sol-gel method. To obtain better visible light induced properties, the CNTs-TiO2 composite films were implanted by nitrogen ions (N+ ions) with ions energy of 40 keV and doses of 5 x 10(15), 1 x 10(16), 5 x 10(16), and 1 x 10(17) ions/cm(2) using an implanter equipped with Freeman ion source. SEM, XRD, XPS and UV-Vis spectra were utilized to explore the surface morphology, crystal structure, chemical composition and optical characteristics of the composite films respectively. The visible light induced properties of the composite films were examined by the experiments of degradation of methylene orange, water contact angle measurements and sterilization of E. colt. The XPS results showed the replacement of oxygen by implanted N+ ions in TiO2 lattice. The UV-Vis spectra exhibited the red shift for all implanted samples. Meanwhile, the results of visible light induced experiments showed that the photocatalytic degradation efficiency and antibacterial activity of TiO2 composite films were enhanced, and the water contact angle decreased, which indicates that those properties of TiO2 composite films were improved. The best performance of hydrophilic, photocatalytic and antibacterial properties of the composite TiO2 films was corresponding to the implanted dose of 1 x 10(16), 5 x 10(16) and 1 x 10(17) ions/cm(2) respectively.
机译:使用溶胶 - 凝胶法合成碳纳米管(CNT)掺杂TiO 2膜。为了获得更好的可见光诱导性质,通过氮离子(N +离子)植入CNTS-TiO 2复合膜,离子能量为40keV,10(15),1×10(16),5×10( 16),和1×10(17)离子/ cm(2)使用配备有Freeman离子源的注入机。 SEM,XRD,XPS和UV-VIS光谱分别用于分别探讨复合膜的表面形态,晶体结构,化学成分和光学特性。通过降解亚甲基橙,水接触角测量和大肠杆菌灭菌的试验来检查复合膜的可见光诱导性质。 XPS结果显示通过TiO 2格中的植入N +离子替代氧气。 UV-Vis光谱表现出所有植入样品的红色转变。同时,可见光诱导的实验的结果表明,二氧化钛复合膜的光催化降解效率和抗菌活性进行了增强,并且水接触角减小,这表明TiO2复合薄膜的这些性质得到改善。复合TiO 2膜的亲水性,光催化和抗菌性能的最佳性能对应于1×10(16),5×10(16)和1×10(17)离子/ cm(2)的植入剂量。

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