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Synthesis and Characterization of Au@TiO2 NWs and their Catalytic Activity by Water Splitting: A Comparative Study with Degussa P25

机译:Au @ TiO2纳米线的合成,表征及其水分解催化活性:与Degussa P25的比较研究

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摘要

Different amount of gold nanoparticles (1, 3, 5, 10 wt%) were deposited on the surface of synthesized titanium oxide nanowires (TiO2 NWs) and Degussa P25 (TiO2-P25). The results evidenced the presence of small and dispersed gold particles on the surface of TiO2 NWs and TiO2-P25 and an increase in the specific surface area of all the composites. The photocatalytic activity was characterized by measuring the hydrogen production by water splitting, using UV-vis radiation. Au@TiO2 NWs catalysts showed the highest production of hydrogen (1,436 μmol hg-1), with a gold loading of 10 wt%, while in the case of Au@TiO2-P25 the hydrogen production was slightly lower (800 μmol hg-1), with a gold loading of 5 wt%. The enhancement in the hydrogen production was 11.5 times higher than that reported by the TiO2 NWs catalyst (125 µmol hg-1) and 5.2 times higher than the TiO2-P25 (154 µmol hg-1). The activity of the catalysts was found to be dependent both on the surface area of the composites and on the amount of gold.
机译:在合成的氧化钛纳米线(TiO2 NWs)和Degussa P25(TiO2-P25)的表面上沉积了不同数量的金纳米粒子(1、3、5、10 wt%)。结果表明,在TiO2 NWs和TiO2-P25的表面上存在分散的小金颗粒,并且所有复合材料的比表面积都有所增加。通过使用UV-vis辐射通过水分解来测量氢产生来表征光催化活性。 Au @ TiO2 NWs催化剂显示最高的氢气产生量(1,436μmolhg-1),金含量为10 wt%,而Au @ TiO2-P25的氢气产生量稍低(800μmolhg-1) ),金含量为5 wt%。制氢量的增加比TiO2 NWs催化剂(125 µmol hg-1)高11.5倍,比TiO2-P25(154 µmol hg-1)高5.2倍。发现催化剂的活性既取决于复合材料的表面积又取决于金的量。

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