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Photocatalytic hydrogen production of the CdS/TiO2-WO3 ternary hybrid under visible light irradiation

机译:CdS / TiO2-WO3三元杂化物在可见光照射下的光催化产氢

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An attractive and effective method for converting solar energy into clean and renewable hydrogen energy is photocatalytic water splitting over semiconductors. The study aimed at utilizing organic sacrificial agents in water, modeled by formic acid, in combination with visible light driven photocatalysts to produce hydrogen with high efficiencies. The photocatalytic hydrogen production of cadmium sulfide (CdS)/titanate nanotubes (TNTs) binary hybrid with specific CdS content was investigated. After visible light irradiation for 3 h, the hydrogen production rate of 25 wt% CdS/TNT achieved 179.35 mu mol.h(-1). Thanks to the two-step process, CdS/TNTs-WO3 ternary hybrid can better promote the efficiency of water splitting compared with CdS/TNTs binary hybrid. The hydrogen production of 25 wt% CdS/TNTs-WO3 achieved 212.68 mu mol.h(-1), under the same condition. Coating of platinum metal onto the WO3 could further promote the reaction. Results showed that 0.2 g 0.1 wt % Pt/WO3 + 0.2 g 25 wt% CdS/TNTs had the best hydrogen production rate of 428.43 mu mol.h(-1). The resultant materials were well characterized by high-resolution transmission electron microscope, X-ray diffraction, scanning electron microscopy, and UV-Vis spectra.
机译:一种将太阳能转换为清洁和可再生氢能的有吸引力且有效的方法是在半导体上进行光催化水分解。该研究旨在利用甲酸模拟的水中有机牺牲剂与可见光驱动的光催化剂的结合,以高效地产生氢气。研究了具有特定CdS含量的硫化镉(CdS)/钛酸酯纳米管(TNTs)二元杂化材料的光催化制氢。可见光照射3 h后,氢的生成率为25 wt%CdS / TNT,达到179.35μmol.h(-1)。由于采用了两步过程,与CdS / TNTs二元杂种相比,CdS / TNTs-WO3三元杂种可以更好地提高水分解效率。在相同条件下,25 wt%CdS / TNTs-WO3的制氢量达到212.68μmol.h(-1)。将铂金属涂覆到WO3上可以进一步促进反应。结果表明0.2 g 0.1 wt%Pt / WO3 + 0.2 g 25 wt%CdS / TNTs的最佳产氢率为428.43μmol.h(-1)。所得材料通过高分辨率透射电子显微镜,X射线衍射,扫描电子显微镜和UV-Vis光谱得到了很好的表征。

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