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Formation of crystallized titania nanotubes and their transformation into nanowires

机译:结晶二氧化钛纳米管的形成及其向纳米线的转化

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摘要

Gram quantities of titania (TiO2) nanotubes, with a typical outside diameter about 9 nm, wall thickness of about 2.5 nm, and length of about 600 nm, were synthesized from anatase nanopowder and micropowder using the hydrothermal method. The crystallization, structure, and phase stability of the nanotubes at high temperatures were studied. A morphology change from nanotube to nanowire was observed at 650 °C. The as-prepared nanotubes were usually contaminated with sodium impurities and were poorly crystallized, but under optimized synthesis conditions the impurity phase was completely removed, resulting in highly crystallized nanotubes. The volume filling fraction of the autoclave as well as the concentration of the acid treatment were found to be particularly important for controlling the purity and crystallinity of the resulting nanotubes. The various TiO_2-derived nanotube phases (sodium titanate and hydrogen titanate) reported previously by different groups were also observed under different synthesis conditions, resolving the contradiction among the previous results.
机译:使用水热法由锐钛矿型纳米粉和微粉合成了典型数量的外径约为9 nm,壁厚约为2.5 nm,长度约为600 nm的二氧化钛(TiO2)纳米管。研究了纳米管在高温下的结晶,结构和相稳定性。在650℃下观察到从纳米管到纳米线的形态变化。所制备的纳米管通常被钠杂质污染并且结晶不良,但是在优化的合成条件下,杂质相被完全去除,从而得到高度结晶的纳米管。发现高压釜的体积填充率以及酸处理的浓度对于控制所得纳米管的纯度和结晶度特别重要。在不同的合成条件下,还观察到了不同族群先前报道的各种TiO_2衍生的纳米管相(钛酸钠和钛酸氢),解决了先前结果之间的矛盾。

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