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Hydrothermal Stability of {001} Faceted Anatase TiO2

机译:{001}多晶锐钛矿型TiO2的水热稳定性

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Due to its great importance in fundamental research and practical applications, tailored synthesis of anatase TiO2 dominated with highly energetic {001} facets has been extensively studied during the past few years. However, clean (001) surface of anatase TiO2 has been evidenced to be unstable and usually tends to reconstruct under ultrahigh-vacuum conditions. Thus, the stability of surface structure under other ambient conditions might be one of the most critical issues for anatase TiO2 with exposed high-reactive {001} facets. In this study, the hydrothermal stability of {001} faceted anatase TiCO2 was systematically investigated by using single-crystalline anatase TiO2 nanosheets wifh 80% {001} facets as a model starting material. Under hydrothermal conditions (200 °C in deionized water), anatase TiO2 nanosheets can grow into larger single crystals with a truncated bipyramidal shape through an oriented attachment process alone the [001] crystallographic direction, driven by the minimization of surface energy. Furthermore, the coarsening behavior and growth mechanism were discussed with the assistance of standard and high-resolution transmission electron microscopy, X-ray diffraction, X-ray photoelectron spectroscopy, and inductively coupled plasma optical emission spectrometry, as well as theoretical calculations. A modified kinetic model was also developed to elucidate the asymptotic growth of anatase TiO2 nanosheets via oriented attachment mechanism. In addition, pH value and the solvents adopted during the treatments were revealed to have significant influence on the oriented attachment-based crystal growth due to suppression of hydrolysis of Ti—F groups on the surface. For example, the anatase TiO2 nanosheets remained their original morphology unchanged when ethanol, propanol, butanol, or 1.5 M HC1 aqueous solution was used as reaction medium.
机译:由于其在基础研究和实际应用中的重要性,在过去的几年中,对以高能{001}面为主的锐钛矿型TiO2的定制合成进行了广泛的研究。然而,已证明锐钛矿型TiO2的干净(001)表面不稳定,并且通常倾向于在超高真空条件下重建。因此,在其他环境条件下,表面结构的稳定性可能是具有高反应性{001}小面暴露的锐钛矿型TiO2的最关键问题之一。在这项研究中,使用80%{001}晶面的单晶锐钛矿型TiO2纳米片作为模型原材料,系统地研究了{001}晶面锐钛矿TiCO2的水热稳定性。在水热条件下(去离子水中200°C),锐钛矿型TiO2纳米片可以通过仅通过[001]结晶方向的定向附着过程,在表面能最小化的驱动下,生长成具有截断的双锥体形状的较大的单晶。此外,借助标准和高分辨率透射电子显微镜,X射线衍射,X射线光电子能谱和电感耦合等离子体发射光谱法以及理论计算,讨论了粗化行为和生长机理。还开发了改进的动力学模型,以阐明通过定向附着机制的锐钛矿型TiO2纳米片的渐近生长。另外,由于抑制了表面上的Ti-F基团的水解,因此显示出pH值和在处理过程中采用的溶剂对定向取向的晶体生长具有显着影响。例如,当使用乙醇,丙醇,丁醇或1.5 M HCl水溶液作为反应介质时,锐钛矿型TiO2纳米片保持其原始形态不变。

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