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Hydrogenated black-TiOx: A facile and scalable synthesis for environmental water purification

机译:氢化黑色TiOx:适用于环境水净化的容易和可扩展的合成

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摘要

In the last few years, intense efforts have been devoted to the development of new photoactive materials for solar-driven water purification. In particular, the black-TiOx has attracted growing interest demonstrating the required capabilities. We report on the synthesis, characterization and application of hydrogenated-black titanium oxide films for photocatalytic water treatment. Moreover, we compared different experimental conditions in order to maximise the photocatalytic activity of the material while maintaining an industrially compatible and green synthesis approach. The scalability and robustness of the procedure is further demonstrated by using different lasers: a 1064 nm laser, a 532 nm laser at low repetition rate and a 532 nm high repetition rate laser at different scan speeds. The morphology of the irradiated surfaces depends on the laser wavelength, while light adsorption in both UV and visible range is higher than 85% in every case. Amorphous and highly hydrogenated phases were found to be the most abundant although sub-stoichiometric crystalline oxides (TiO and Ti2O3) are also found depending on the laser used. Owing to the presence of a metallic Ti support, a monolithic photochemical diode is realised by depositing a film of Pt nanoparticles on the back-side of the samples. Photocatalytic activity tests reported high degradation rates for methylene blue dye with a maximum quantum efficiency of 0.054% observed on the sample irradiated with the 532 nm laser. Short and long-term photo-stability was investigated resulting in a good reliability of the manufactured diode.
机译:在过去的几年里,激烈的努力已经致力于开发用于太阳能驱动的水净化的新型光活性材料。特别是,Black-TiOx吸引了越来越多的兴趣,证明了所需的能力。我们报道了光催化水处理的氢化黑色氧化钛膜的合成,表征和应用。此外,我们比较了不同的实验条件,以最大化材料的光催化活性,同时保持工业上兼容和绿色的合成方法。通过使用不同的激光器进一步证明了该过程的可扩展性和鲁棒性:1064nm激光,在低重复率下,532nm激光器,在不同的扫描速度下以532nm高重复率激光器。辐照表面的形态取决于激光波长,而UV和可见范围的光吸附在每种情况下高于85%。发现无定形和高氢化的相对于亚化学计量结晶氧化物(TiO和Ti2O3)也是如此丰富,这取决于所用的激光。由于存在金属Ti载体,通过在样品的背面沉积Pt纳米颗粒的膜来实现整体光化学二极管。光催化活性试验报告的亚甲基蓝染料的高降解速率,最大量子效率为0.054%,在用532nm激光照射的样品上观察到。研究了短期和长期光稳定性,导致制造二极管的良好可靠性。

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