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In-Situ Synthesis and Characterization of Carbon Dots and TiO2 Nanocomposites Anchored on TiO2 Nanotube Arrays

机译:原位合成和表征碳点和TiO2纳米复合材料锚定的TiO2纳米管阵列

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A modified anodic oxidation method was used to prepare amorphous titanium dioxide nanotube arrays (TiO2NTs) on Ti foil firstly. Then TiO2NTs were decorated with nanocomposites of CDs-TiO2 through designed one-step solvothermal techniques in-situ, accompanying with crystallization of TiO2NTs. The crystallinity of TiO2, morphologies and ingredients of the hybrid nanocomposites could be controlled by solvothermal conditions. It was found solvothermal procedure could play a similar role on the TiCh crystal formation like the common anneal treatments. Furthermore, there were more Ti-C bonds found in the composites derived from amorphous TiO2NTs undergone a solvothermal process. The measurements of photo-degradation on both methyl blue and rhodamine B showed an excellent photocatalytic activity for CDs-TiO2 decorated TiO2NTs (CDs-TiO2-TiO2NTs) under no matter ultraviolet or visible light irradiation.
机译:改性阳极氧化方法首先在Ti箔上制备无定形二氧化钛纳米管阵列(TiO2NTS)。然后通过在原位设计的一步溶液技术的纳米复合材料用Cds-TiO 2的纳米复合物装饰,伴随着TiO2的结晶。杂化纳米复合材料的TiO2,形态学和成分的结晶度可以通过溶剂热条件控制。它被发现溶剂热程序可以在常见的退火处理等TICH晶体形成上发挥类似的作用。此外,在衍生自无定形TiO2NTS的复合材料中发现更多的Ti-C键在经过溶剂热过程中。在无论紫外线还是可见光照射时,甲基蓝色和罗达胺B上的光催化的测量显示为Cds-TiO2的Cds-TiO2装饰TiO2(Cds-TiO2-TiO 2)的优异光催化活性。

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