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首页> 外文期刊>The journal of physical chemistry, C. Nanomaterials and interfaces >Oxidative Disproportionation of MoS2/GO to MoS2/MoO3-x/RGO : Integrated and Plasmonic 2D-Multifunctional Nanocomposites for Solar Hydrogen Generation from Near-Infrared and Visible Regions
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Oxidative Disproportionation of MoS2/GO to MoS2/MoO3-x/RGO : Integrated and Plasmonic 2D-Multifunctional Nanocomposites for Solar Hydrogen Generation from Near-Infrared and Visible Regions

机译:MOS2的氧化歧化/转到MOS2 / MOO3-X / RGO:用于近红外和可见区域的太阳能氢气的集成和等离子体2D多功能纳米复合材料

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摘要

Two dimensional (2D) semiconductor materials have been recently demonstrated to be effective plasmonic materials and alternatives to costly noble metals. However, tuning the plasmon resonance of 2D semiconductors and integrating with another material or semiconductor for various applications, such as solar light harvesting, remains a challenge. Herein, we designed a simple and attractive method, which facilitates the diffusion of oxygen from the graphene oxide (GO) layers of the MoS2/GO (MG) composite to oxidize the MoS2 layers significantly due to thermal treatment under inert atmosphere. This is the key step in the formation of MoS2/MoO3-x/RGO (MMR) (x = 0, 0.5, and 1, and all stoichiometries co-exist), due to disproportionation of MoS2/GO, with bulk heterojunctions among the components. The observed behavior is attributed to the oxidation of Mo4+ cations (of MoS2) to higher oxidation states in MMR (Mo(5+ )and Mo6+ of MoO3-x), which also alters the valence-band electronic structure and work function of the resulting composite. The 2D MoO3-x layers with a large amount of Mo5+ oxidation states enables facile charge carrier generation due to plasmonic effect, whereas MoS2 provides active sites for catalysis. The solar H-2 generation was demonstrated in the visible and near-infrared region by combining both the plasmonic and catalytic effects in one composite. These results demonstrate the important role of RGO to provide energy-level alignment, charge carrier diffusion, and help to generate plasmonic effect in the composite.
机译:最近已经证明二维(2D)半导体材料是有效的等离子体材料和昂贵贵金属的替代品。然而,调整2D半导体的等离子体共振并与其他材料或半导体集成各种应用,例如太阳能光收获,仍然是一个挑战。在此,我们设计了一种简单且有吸引力的方法,其促进了MOS2 / GO(Mg)复合物的石墨烯氧化物(GO)层的扩散,因为由于惰性气氛下的热处理而显着地氧化MOS2层。这是MOS2 / MOO3-X / RGO(MMR)形成的关键步骤(MMR)(x = 0,0.5和1,以及所有的组合物)由于MOS2 / GO的歧化,散装杂交功能成分。观察到的行为归因于MO4 +阳离子(MOS2)的氧化在MMR(MO(5+)和MOO3-X的MO6 +)中的更高氧化态,这也改变了所得的价带电子结构和工作功能合成的。具有大量MO5 +氧化状态的2D MOO3-X层使得由于等离子体效应而使容纳电荷载流子产生,而MOS2为催化的活性位点提供。通过在一个复合材料中结合等离子体和催化作用,在可见光和近红外区域中证明了太阳能H-2。这些结果表明RGO提供能量水平对准,电荷载体扩散以及帮助在复合材料中产生等离子体效应的重要作用。

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