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Graphene Oxide/BiOCl Nanocomposite Films as Efficient Visible Light Photocatalysts

机译:氧化石墨烯/ BiOCl纳米复合薄膜作为高效可见光光催化剂

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摘要

A novel graphene oxide/BiOCl (GO/BiOCl) nanocomposite film was prepared via a spread coating method. In visible-light photocatalytically degrading Rhodamine B (RhB) experiments, 2 wt% GO/BiOCl could degrade 99% of RhB within 1.5 h and the rate constant was 12.2 times higher than that of pure BiOCl. The degradation efficiency still kept at 80% even after 4 recycles, evidencing the relatively good recyclability. The enhancement was attributed to the improvement of visible light adsorption and charge separation. Holes and superoxide radicals·O2- played a major role as reactive species. The values of conduction band and valence band for GO and BiOCl were calculated and a new photocatalytic mechanism of GO/BiOCl nanocomposite was proposed.
机译:通过铺涂法制备了新型的氧化石墨烯/ BiOCl(GO / BiOCl)纳米复合膜。在可见光光催化降解若丹明B(RhB)实验中,2 wt%的GO / BiOCl可以在1.5 h内降解99%的RhB,且速率常数比纯BiOCl高12.2倍。即使经过4次循环,降解效率仍保持在80%,证明了相对良好的循环性。增强归因于可见光吸附和电荷分离的改善。孔和超氧化物自由基·<数学xmlns:mml =“ http://www.w3.org/1998/Math/MathML” id =“ M1” overflow =“ scroll”> O < / mtext> 2 - 起着主要作用,反应性物种。计算了GO和BiOCl的导带和价带,并提出了GO / BiOCl纳米复合材料的新光催化机理。

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