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Nanocrystalline N-doped ceria porous thin films as efficient visible-active photocatalysts

机译:纳米晶掺氮二氧化铈多孔薄膜作为有效的可见活性光催化剂

摘要

Nanocrystalline porous N-doped ceria films have been prepared by combining sol-gel chemistry, evaporation-induced self-assembly (EISA), flash crystallization and treatment in NH 3 gas between 550 and 700 °C at flow rates of 270 and 670 cm 3 min -1. The maximum nitrogen uptake is 0.06 moles per Ce, observed for the sample treated at 600 °C and NH 3 flow rate of 670 cm 3 min -1. Nitrogen bonding to cerium is proved by XPS, through the observation of the characteristic Ce-N feature at ∿397 eV. Microstructural characterization shows that the mesostructure of the films is lost for treatment temperatures in ammonia higher than 550 °C but the porous fraction remains between 35 and 40% after ammonolysis for all the samples. The nitrided films show photocatalytic activity under visible light in the acetaldehyde decomposition, with the best results obtained for the films treated at 550 °C under NH 3 flow rate of 670 cm 3 min -1. © 2012 The Royal Society of Chemistry.
机译:通过结合溶胶-凝胶化学,蒸发诱导自组装(EISA),快速结晶和在550和700°C之间的NH 3气体中以270和670 cm的流速进行处理,制备了纳米晶多孔N掺杂的二氧化铈薄膜。 3分钟-1。对于在600°C和670 cm 3 min -1的NH 3流速下处理的样品,观察到的最大氮吸收量为0.06摩尔/铈。 XPS通过在397 eV处观察到Ce-N的特征来证明氮与铈的键合。微观结构表征表明,在高于550°C的氨气中,处理温度会使薄膜的介孔结构丧失,但对所有样品进行氨解后,多孔部分仍保持在35%至40%之间。氮化膜在乙醛分解的可见光下显示出光催化活性,对于在550 cmC的NH 3流速为670 cm 3 min -1下处理的膜,可获得最佳结果。 ©2012皇家化学学会。

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