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首页> 外文期刊>Nanotechnology >Multistep structural transition of hydrogen trititanate nanotubes into TiO2-B nanotubes: a comparison study between nanostructured and bulk materials
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Multistep structural transition of hydrogen trititanate nanotubes into TiO2-B nanotubes: a comparison study between nanostructured and bulk materials

机译:钛酸氢钠纳米管向TiO2-B纳米管的多步结构转变:纳米结构材料与块状材料之间的比较研究

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H-trititanate nanotubes obtained by alkali hydrothermal treatment Of TiO2 followed by proton exchange were compared to their bulk H2Ti3O7 counterpart with respect to their thermally induced structural transformation paths. As-synthesized and heat-treated samples were characterized by XRD, TEM/SAED, DSC and spectroscopy techniques, indicating that H2Ti3O7 nanotubes showed the same sequence of structural transformations as their bulk counterpart obtained by conventional solid state reaction. Nanostructured H2Ti3O7 converts into TiO2(B) via multistep transformation without losing its nanotubular morphology. The transformation occurs between 120 and 400 degrees C through topotactic mechanisms with the intermediate formation of nanostructured H2Ti6O13 and H2Ti12O25, which are more condensed layered titanates eventually rearranging to TiO2(B). Our results suggest that the intermediate tunnel structure H2Ti12O25 is the final layered intermediate phase, on which TiO2(B) nucleates and grows. The conversion of nanostructured TiO2(B) into anatase is completed at a much lower temperature than its bulk counterpart and is accompanied by loss of the nanotubular morphology.
机译:通过对TiO2进行碱水热处理,然后进行质子交换,将H-三钛酸酯纳米管与它们的整体H2Ti3O7对应物进行了热诱导结构转变路径的比较。通过XRD,TEM / SAED,DSC和光谱技术对合成后和热处理后的样品进行表征,表明H2Ti3O7纳米管显示出与通过常规固态反应获得的大体积对应物相同的结构转变序列。纳米结构的H2Ti3O7通过多步转化转变为TiO2(B),而不会失去其纳米管形态。转变是通过全能机理在120到400摄氏度之间发生的,中间形成了纳米结构的H2Ti6O13和H2Ti12O25,它们是更稠密的层状钛酸盐,最终重排为TiO2(B)。我们的结果表明,中间隧道结构H2Ti12O25是最终的层状中间相,TiO2(B)在其上成核并生长。纳米结构的TiO2(B)向锐钛矿的转化要比其本体的TiO2(B)转化温度低得多,并且伴随着纳米管形态的丧失。

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