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Size- and shape-dependent transformation of nanosized titanate into analogous anatase titania nanostructures

机译:尺寸和形状依赖的纳米级钛酸酯转变为类似的锐钛型二氧化钛纳米结构

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摘要

A size- and shape-dependent morphological transformation was demonstrated during the hydrothermal soft chemical transformation, in neutral solution, of titanate nanostructures into their anatase titania counterparts. Specifically, lepidocrocite hydrogen titanate nanotubes with diameters of similar to 10 nm were transformed into anatase nanoparticles with an average size of 12 nm. Lepidocrocite hydrogen titanate nanowires with relatively small diameters (average diameter range of <= 200 nm) were converted into single-crystalline anatase nanowires with relatively smooth surfaces. Larger diameter (> 200 nm) titanate wires were transformed into analogous anatase submicron wire motifs, resembling clusters of adjoining anatase nanocrystals with perfectly parallel, oriented fringes. Our results indicate that as-synthesized TiO2 nanostructures possessed higher photocatalytic activity than the commercial titania precursors from whence they were derived.
机译:在水热软化学转化过程中,在中性溶液中将钛酸酯纳米结构转变为锐钛型二氧化钛对应物时,证实了尺寸和形状相关的形态转化。具体地,将直径近似于10nm的纤铁矿钛酸氢钛纳米管转化为平均尺寸为12nm的锐钛矿纳米颗粒。将具有相对较小的直径(平均直径范围<= 200 nm)的纤铁矿钛酸氢盐纳米线转换为具有相对光滑表面的单晶锐钛矿纳米线。较大直径(> 200 nm)的钛酸酯丝被转化为类似的锐钛矿亚微米丝图案,类似于具有完美平行,定向条纹的锐钛矿纳米晶体簇。我们的结果表明,合成后的TiO2纳米结构比衍生自其的商业二氧化钛前体具有更高的光催化活性。

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