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Effect of nanostructured titanium on anodization growth of self-organized TiO2 nanotubes

机译:纳米钛对自组织TiO2纳米管阳极氧化生长的影响

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To understand the effect of substrate microstructure on the formation of TiO2 nanotubes, anodic oxidizations of commercially pure titanium subjected to surface mechanical attrition treatment (SMATed-Ti) and unSMATed-Ti in a glycol solution containing NH4F and small amounts of water were investigated. The SMATed-Ti exhibit a nanocrystallized surface layer containing a high density of grain boundaries compared with unSMATed-Ti. The anodization results show that the formed TiO2 nanotube layer on the SMATed-Ti is much thicker than that on the unSMATed-Ti. It is indicated that nanocrystallized Ti is propitious to the growth of TiO2 nanotubes; grain boundaries and dislocations play the leading role in accelerating the reaction rate and ion diffusion coefficient during anodization. In addition, nanocrystallization of Ti does not change surface morphologies and phase components of the TiO2 nanotubes.
机译:为了了解衬底微观结构对TiO2纳米管形成的影响,研究了在含有NH4F和少量水的乙二醇溶液中经过表面机械磨损处理(SMATed-Ti)和unSMATed-Ti的商业纯钛的阳极氧化。与未SMATed-Ti相比,SMATed-Ti表现出包含高晶界密度的纳米晶化表面层。阳极氧化结果表明,在SMATed-Ti上形成的TiO2纳米管层比未在SMATed-Ti上形成的TiO2纳米管层厚得多。表明纳米晶化的Ti有利于TiO2纳米管的生长。晶界和位错在加速阳极氧化过程中的反应速率和离子扩散系数方面起着主导作用。此外,Ti的纳米结晶不会改变TiO2纳米管的表面形态和相组成。

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