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Microwave-assisted hydrothermal synthesis of Cu-doped titanate nanotubes: photoluminescence and photocatalysis properties

机译:微波辅助水热合成掺杂铜的钛酸酯纳米管:光致发光和光催化性能

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The synthesis of Cu-doped nanotubes was successfully realized using the hydrothermal method assisted by microwave (MWH). The structure found from XRD shows a typical profile of the layered titanate, containing no peak for secondary phases and no copper phase. These titanates have nanotubes morphology, independent of the synthesis time is 2 or 4 hours. From EDS analysis is possible to verify both the copper and sodium presence, indicating the intercalations between Na~+ and Cu~(2+) ions on the structure. The photoluminescence analysis indicated that the CuNT-4h sample have more surface defects and lower rate of electron-hole recombination. The presence of these particular types of defects leads to enhanced photocatalytic activity of CuNT-4h sample relative to the other. This study concluded that the Cu-doped nanotubes have higher photocatalytic activity than the TiO_2-anatase (synthesis precursor) and their activity depends on the type of defects present in the sample.
机译:微波辅助水热法成功地实现了Cu掺杂纳米管的合成。从XRD发现的结构显示了层状钛酸酯的典型轮廓,其不包含次级相的峰并且不包含铜相。这些钛酸酯具有纳米管形态,与合成时间为2或4小时无关。通过EDS分析可以验证铜和钠的存在,表明结构中Na〜+和Cu〜(2+)离子之间的插入。光致发光分析表明,CuNT-4h样品具有更多的表面缺陷和较低的电子-空穴复合率。这些特定类型的缺陷的存在导致CuNT-4h样品相对于其他样品具有增强的光催化活性。这项研究得出的结论是,掺杂Cu的纳米管比TiO_2-锐钛矿(合成前体)具有更高的光催化活性,其活性取决于样品中缺陷的类型。

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