Hydrogen production by photocatalysis using new composites based on SiO2 coated by TiO2

A. Machado, Werick Alves Machado
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Abstract

In this study new TiO2 photocatalysts core@shell type were synthesized using SiO2 as structural support. The coating was confirmed by scanning electron microscopy and infrared spectroscopy. Adsorption isotherms revealed that the surface area of such composites is about 26% higher than pure oxide (W50). X-ray diffractograms combined with Raman spectroscopy revealed that the synthesized TiO2 presents a structure based on the coexistence of anatase and brookite. The composite W50S50 presented the best photocatalytic performance of H2 production, with 13.5 mmol in 5 h, corresponding to a specific rate of 32.5 mmol h−1g−1. In the reuse assays, this composite presented a good stability in the production of H2. However, its performance presented a reduction of 23% over the reuse cycles. Considering the H2 production in a solar simulator, W50S50 produced about 25.0 μmols, which is equivalent to 48.0 μmols h−1g−1, suggesting the good performance of this material for photocatalytic hydrogen production.
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二氧化硅包覆复合材料光催化制氢研究
本文以SiO2为结构载体,合成了新型的core@shell型TiO2光催化剂。通过扫描电镜和红外光谱对涂层进行了验证。吸附等温线显示,该复合材料的表面积比纯氧化物(W50)高出约26%。x射线衍射结合拉曼光谱分析表明,合成的TiO2呈现锐钛矿和板钛矿共存的结构。复合材料W50S50的光催化产氢性能最好,5 h内产氢13.5 mmol,比速率为32.5 mmol h−1g−1。在重复使用试验中,该复合材料在H2的生产中表现出良好的稳定性。然而,它的性能在重用周期中下降了23%。W50S50的产氢量约为25.0 μmol,相当于48.0 μmol h−1g−1,表明该材料具有良好的光催化产氢性能。
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