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首页> 外文期刊>Catalysis science & technology >Hybrid TiO2/graphene derivatives nanocomposites: is functionalized graphene better than pristine graphene for enhanced photocatalytic activity?
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Hybrid TiO2/graphene derivatives nanocomposites: is functionalized graphene better than pristine graphene for enhanced photocatalytic activity?

机译:混合二氧化钛/石墨烯衍生物纳米复合材料:功能化石墨烯比原始吗石墨烯增强光催化活动吗?

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摘要

Graphene (GR) and its derivatives are generally assumed to be electron shuttles in order to explain the improved photocatalytic activity of their nanocomposites (such as TiO2/GR). However, it fails to account for the experimental results, which demonstrate that the photocatalytic activity of TiO2/reduced graphene oxide (RGO) is higher than that of TiO2/GR. Herein, we explore the underlying mechanism for the enhanced photocatalytic activity of TiO2/RGO (GR) by comparing several influential factors: band gap, band alignment near the gap, optical absorption, and active sites, via first-principles calculations. The results show that the small band gap, the type-II staggered band alignment, and the negatively charged O atoms as active sites in photocatalytic reactions are likely to be key factors for the photocatalytic activity of TiO2/RGO being better than that of TiO2/GR, partly offering a physical interpretation for related experimental results. Interestingly, the enhanced photocatalytic activity of TiO2/graphane (GRH) is also predicted. These results suggest that functionalized GR is most likely better than pristine graphene at improving the photocatalytic activity of TiO2/GR-based semiconductor photocatalysts.
机译:石墨烯(GR)及其衍生物一般假定为电子航天飞机来解释了提高光催化活性他们的纳米复合材料(如二氧化钛/ GR)。不能解释实验结果,这表明,光催化活性二氧化钛/石墨烯氧化物(RGO)是减少高于二氧化钛/ GR。增强的底层机制二氧化钛光催化活性的/ RGO (GR)比较几个影响因素:带隙,乐队对齐附近的差距、光学吸收、并通过采用基于活跃的网站,计算。带隙,ⅱ型交错乐队对齐,和带负电荷的O原子活跃网站在光催化反应光催化活性的关键因素二氧化钛/ RGO优于二氧化钛/ GR,部分提供的物理解释相关的实验结果。提高二氧化钛光催化活性的/ graphane(GRH)也预测。功能化GR是最有可能比原始的石墨烯在提高光催化活性二氧化钛/ GR-based半导体论文的。

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