4.6 Article

Optimizing the performance of photocatalytic H2 generation for ZnNb2O6 synthesized by a two-step hydrothermal method

期刊

RSC ADVANCES
卷 8, 期 25, 页码 13857-13864

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ROYAL SOC CHEMISTRY
DOI: 10.1039/c8ra01624k

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资金

  1. National Natural Science Foundation of China [21671028, 21771027]
  2. Natural Science Foundation of Chongqing [CSTC2016jcyjA0291]
  3. Chongqing University [201712150076]

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Semiconductor-based photocatalytic H-2 generation is a promising technique and the development of efficient photocatalysts has attracted great attention. Columbite-ZnNb2O6 is a wide-bandgap semiconductor capable of photocatalytic water splitting. Here we employed a two-step hydrothermal method to first dissolve Nb2O5 with a highly basic aqueous solution and further react it with Zn2+ to form nanosized ZnNb2O6. The reaction time plays an important role on its morphology and photocatalytic performance in water reduction. The sample synthesized through 7 days of reaction was the optimal one with an appropriate crystallinity and a large specific surface area, however the severe surficial defects prohibited its photocatalytic activity in pure water. The H-2 generation at a rate of 23.6(5) mol h(-1) g(-1) emerged when 20 vol% methanol was used as the hole-sacrificial agent. Most remarkably, once metal or metal oxide cocatalysts, including Pt, Au, NiO, RuO2, Ag2O, and Pd/PdO, were loaded appropriately, the photocatalytic H-2 generation rate ultimately achieved 3200(100) or 680(20) mol h(-1) g(-1) with or without using methanol, respectively. Apparent quantum yields (AQYs) at 295 nm were investigated by changing the experimental parameters, and the optimal AQYs are 4.54% and 9.25% in water and methanol solution, respectively. Further post-modifications like bandgap engineering may be performed on this highly efficient nano-ZnNb2O6.

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