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Influence of the Sodium/Proton replacement on the structural, morphological and photocatalytic properties of titanate nanotubes

机译:钠/质子替代对钛酸酯纳米管结构,形态和光催化性能的影响

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摘要

Titanate nanotubes (TNT) with different sodium contents have been synthesised using a hydrothermal approach and a swift and highly controllable post-washing processes. The influence of the sodium/proton replacement on the structural and morphological characteristics of the prepared materials was analysed. Different optical behaviour was observed depending on the Na+/H+ samples’ content. A band gap energy of 3.27±0.03 eV was estimated for the material with higher sodium content while a value of 2.81±0.02 eV was inferred for the most protonated material, which therefore exhibits an absorption edge in the near visible region. The point of zero charge of the materials was determined and the influence of the sodium content on the adsorption of both cationic and anionic organic dyes was studied. The photocatalytic performance of the TNT samples was evaluated in the rhodamine 6G degradation process. Best photodegradation results were obtained when using the most protonated material as catalyst, although this material has shown the lowest R6G adsorption capability.
机译:钠含量不同的钛酸酯纳米管(TNT)已通过水热方法和快速且高度可控的后洗工艺合成。分析了钠/质子替代对所制备材料的结构和形态特征的影响。根据Na + / H +样品的含量,观察到不同的光学行为。钠含量较高的材料的带隙能量估计为3.27±0.03 eV,而质子化程度最高的材料的带隙能量估计为2.81±0.02 eV,因此在近可见光区域显示出吸收边。确定了材料的零电荷点,并研究了钠含量对阳离子和阴离子有机染料吸附的影响。在若丹明6G降解过程中评估了TNT样品的光催化性能。当使用质子化程度最高的材料作为催化剂时,可获得最佳的光降解效果,尽管该材料显示出最低的R6G吸附能力。

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