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Role of RGO support and irradiation source on the photocatalytic activity of CdS–ZnO semiconductor nanostructures

机译:RGO支持和辐射源对CdS–ZnO半导体纳米结构的光催化活性的作用

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摘要

Photocatalytic activity of semiconductor nanostructures is gaining much importance in recent years in both energy and environmental applications. However, several parameters play a crucial role in enhancing or suppressing the photocatalytic activity through, for example, modifying the band gap energy positions, influencing the generation and transport of charge carriers and altering the recombination rate. In this regard, physical parameters such as the support material and the irradiation source can also have significant effect on the activity of the photocatalysts. In this work, we have investigated the role of reduced graphene oxide (RGO) support and the irradiation source on mixed metal chalcogenide semiconductor (CdS–ZnO) nanostructures. The photocatalyst material was synthesized using a facile hydrothermal method and thoroughly characterized using different spectroscopic and microscopic techniques. The photocatalytic activity was evaluated by studying the degradation of a model dye (methyl orange, MO) under visible light (only) irradiation and under natural sunlight. The results reveal that the RGO-supported CdS–ZnO photocatalyst performs considerably better than the unsupported CdS–ZnO nanostructures. In addition, both the catalysts perform significantly better under natural sunlight than under visible light (only) irradiation. In essence, this work paves way for tailoring the photocatalytic activity of semiconductor nanostructures.
机译:近年来,半导体纳米结构的光催化活性在能源和环境应用中都变得越来越重要。然而,几个参数在例如通过改变带隙能量位置,影响电荷载流子的产生和运输以及改变重组率来增强或抑制光催化活性中起关键作用。在这方面,诸如载体材料和辐射源的物理参数也可以对光催化剂的活性具有显着影响。在这项工作中,我们研究了氧化石墨烯(RGO)的支持作用和混合金属硫属化物半导体(CdS–ZnO)纳米结构上的辐射源的作用。使用简便的水热法合成光催化剂材料,并使用不同的光谱和显微镜技术对其进行全面表征。通过研究在可见光(仅)照射下和自然阳光下模型染料(甲基橙,MO)的降解来评估光催化活性。结果表明,RGO负载的CdS–ZnO光催化剂的性能比未负载的CdS–ZnO纳米结构好得多。此外,两种催化剂在自然阳光下的性能要比可见光(仅)照射下的性能好得多。从本质上讲,这项工作为定制半导体纳米结构的光催化活性铺平了道路。

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