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首页> 外文期刊>Electrochimica Acta >Optimal self-organized growth of small anodic TiO_2 nanotubes with 'micro-annealing' effect under complex conditions via reaction-diffusion approach
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Optimal self-organized growth of small anodic TiO_2 nanotubes with 'micro-annealing' effect under complex conditions via reaction-diffusion approach

机译:通过反应扩散方法在复杂条件下具有“微型退火”效应的最佳自组织生长效果

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摘要

This work investigates the change of the morphology and the structural characteristics of the anodic TiO_2 nanotubes under complex conditions (the temperature and the applied potential difference). Optimal growth for small tubes with specific sizes has been realized during this investigation, for example, high quality uniform ultrasmall (outer diameter D ~ 10 nm, wall thickness d ~ 3 nm) tubes can be grown without sacrifice of the growth rate (0.3-0.4 μm h~(-1)). A mechanistic description to the nonmonotonous morphology change under low temperatures has been approached with reaction-diffusion method considering the local reaction, diffusion and field drift processes of the main reaction species. We have also investigated the details of the partial crystallization in the as-prepared TiO_2 tubes and discovered its strong relationship with the temperature. Due to its similarity to the thermo annealing up to several hundred centigrade but much smaller length scale, this phenomenon is named as "micro-annealing" effect.
机译:该工作调查了复杂条件下(温度和施加电位差)下阳极TiO_2纳米管的形态和结构特征的变化。在该研究期间已经实现了具有特定尺寸的小型管的最佳生长,例如,可以生长高质量的均匀超大(外径D〜10nm,壁厚D〜3nm)管,而不会牺牲生长速度(0.3- 0.4μmH〜(-1))。在考虑到主要反应物种的局部反应,扩散和场漂移过程的反应扩散方法,对低温下的非单调形态变化的机械描述。我们还研究了由制备的TiO_2管中部分结晶的细节,并发现其与温度的强烈关系。由于其与热量退火的相似度,但长度较小但长度较小,这种现象被命名为“微退火”效果。

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