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Designing rGO/MoS2 hybrid nanostructures for photocatalytic applications

机译:设计RGO / MOS2杂交纳米结构用于光催化应用

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Graphene and its derivatives exhibit large surface area, being ideal templates to facilitate the nucleation, growth or interaction of a huge variety of structures. Among them, molybdenum disulphide, with its structural and morphological compatibility with graphene, can be a candidate for achieving an excellent integration, to make new hybrid nanocomposites with outstanding characteristics. Among the synthesis methods of graphene/MoS2 composites, the solution-phase exfoliation of a MoS2/graphite mixture, by means of ultrasounds, shows significant advantages in terms of large amount production without altering the main properties of 2D nanomaterials. Moreover MoS2, having a strong absorption in the visible, has been exploited as a novel visible light-sensitive semiconductor photocatalyst. But, due to the quick recombination of photo-generated charge carriers, the photocatalytic efficiency of MoS2 has to be further improved. Graphene and graphene related materials, as excellent electron-acceptor/transport materials, have been applied to photocatalysis, because they are able to decrease the photo-generated electron-hole recombination, thus improving the light absorption. Therefore, MoS2 and graphite oxide (GO) have been simultaneously sonicated in an ethanol/water mixture and characterized from the structure, morphology and electronic properties point of view. The composite was thermally treated in such a way to reduce GO and the photocatalytic activity of the reduced GO/MoS2 has been investigated by means of UV-vis spectroscopy, following the degradation of methylene-blue (MB) under solar-like irradiation.
机译:石墨烯及其衍生物表现出大的表面积,是促进各种结构的核肉,生长或相互作用的理想模板。其中,二硫化钼,具有与石墨烯的结构和形态相容性,可以是实现优异集成的候选者,以制备具有出色特性的新型杂化纳米复合材料。在石墨烯/ MOS2复合材料的合成方法中,借助于超声波的MOS2 /石墨混合物的溶液相去角膜在大量生产方面表现出显着的优势,而不改变2D纳米材料的主要性质。此外,MOS2在可见中具有强吸收的MOS2被利用为新型可见光敏半导体光催化剂。但是,由于光产生电荷载流子的快速重组,MOS2的光催化效率必须进一步提高。石墨烯和石墨烯相关材料,作为优异的电子受体/传输材料,已被应用于光催化,因为它们能够降低光产生的电子孔重组,从而改善光吸收。因此,MOS2和石墨氧化物(GO)在乙醇/水混合物中同时超声处理,并用结构,形态和电子特性的特征表征。以这种方式热处理复合物,以减少去的去,并通过UV-Vis光谱研究了降低的GO / MOS2的光催化活性,之后在太阳能照射下亚甲基 - 蓝(MB)降解。

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