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首页> 外文期刊>CERAMICS INTERNATIONAL >A step forward towards the structural characterization of Na2Ti2O5 center dot H2O nanotubes and their correlation with optical and electric transport properties
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A step forward towards the structural characterization of Na2Ti2O5 center dot H2O nanotubes and their correlation with optical and electric transport properties

机译:朝向Na2Ti2O5中心点H2O纳米管结构表征的步进及其与光学和电力传输性能的相关性

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In this work we present the synthesis, structural, morphological, optical and electrochemical characterization of sodium titanate nanotubes (NaNT) obtained by hydrothermal means. According to our detailed structural study, we found that a Na2Ti2O5 center dot H2O layered crystalline phase with [TiO5] pyramidal square base coordination, utilized as a building block of the nanotubes, explains satisfactorily the experimental results. This is a very important aspect, since the bibliography does not always provide structural information about titanate nanotubes. With respect to the formation mechanism we highlight the crucial role of the post treatment washing in the final crystalline structure of the nanotubes. Simulated X-rays powder diffraction patterns (XRPD), based on real size nanotubes models, were refined with experimental data. Building blocks for the NaNT model were inferred from computational simulations, by means of Density Functional Theory. The obtained tube's model characteristic dimensions were also consistent with SAXS and TEM analysis. In addition, our SAXS analysis suggested that the presence of humidity in the cavities of titanate nanotubes is progressively lost at the 80-100 degrees C temperature range, in good agreement with thermogravimetric analysis. Electrochemical impedance spectroscopy analysis for dried samples in the temperature range, studied under cooling conditions, revealed a single ionic transport mechanism, probably associated to the in-between [TiO5] layers ion transport. However, a secondary process was observed for non-dried samples, during heating conditions, that could be associated to the ionic transport along the water filled tube's cavity, consistent with SAXS analysis. In summary, this work shows an integral approach, through theory and experiment, in order to understand the effect of the structure on the physical and electronic properties of the system.
机译:在这项工作中,我们介绍了通过水热装置获得的钛酸钠纳米管(氮)的合成,结构,形态学,光学和电化学表征。根据我们的详细的结构研究,我们发现,用作纳米管的构建块的Na2Ti2O5中心点H2O层状结晶相,使用作为纳米管的构建块,令人满意地解释了实验结果。这是一个非常重要的方面,因为参考书目并不总是提供有关钛酸纳米管的结构信息。关于地层机制,我们突出了在纳米管的最终结晶结构中洗涤的后处理洗涤的关键作用。模拟基于实际尺寸纳米管模型的模拟X射线粉末衍射图案(XRPD)用实验数据精制。通过密度泛函理论从计算模拟推断出脉模的构建块。所获得的管的模型特征尺寸也与SAXS和TEM分析一致。此外,我们的萨克斯分析表明,钛酸纳米管腔中的湿度在80-100℃的温度范围内逐渐丢失,与热重分析良好。在冷却条件下研究的温度范围内干燥样品的电化学阻抗光谱分析显示,揭示了单一的离子传输机制,可能与在间相连的层离子传输相关。然而,在加热条件下,观察到未干燥样品的二次方法,其可以与沿水管腔的离子传输相关联,这与撒酷肠分析一致。总之,这项工作通过理论和实验表明了一种整体方法,以了解结构对系统的物理和电子性质的影响。

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