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首页> 外文期刊>CERAMICS INTERNATIONAL >Surfactant-free synthesis of homogeneous nano-grade cadmium sulfide grafted reduced graphene oxide composite as a high-activity photocatalyst in visible light
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Surfactant-free synthesis of homogeneous nano-grade cadmium sulfide grafted reduced graphene oxide composite as a high-activity photocatalyst in visible light

机译:无表面活性剂合成均相纳米级硫化物植入的氧化石墨烯复合物作为可见光的高活性光催化剂

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Zero-dimensional cadmium sulfide (CdS) nanoparticles with small size (similar to 50 nm) were grafted on the two-dimensional reduced graphene oxide (RGO) nanosheet via a facile hydrothermal method without any surfactant to synthesize CdS@RGO nanocomposites in this paper. The structural analysis confirms the strong attachment and interaction between CdS and RGO in CdS@RGO photocatalyst, which leads to a higher photocatalytic efficiency (95.3%) with superior anti-corrosion stability (almost no change of efficiency over three repeated experiments) to that of pure CdS in visible light. The unique hybrid nanostructure of CdS@RGO can effectively prevent the self-corrosion of CdS and facilitate the separation of electron-hole pairs. Consequently, these outstanding photocatalytic performances of CdS@RGO endow it with a promising prospect for the degradation of organic pollutants and this work can be extended to other graphene-based inorganic semiconductor composites.
机译:通过不含任何表面活性剂的容易的水热法在二维氧化铟烯氧化物(RGO)纳米片上嫁接零维硫化镉(Cds)纳米颗粒,其在本文中没有任何表面活性剂以合成CDS / Rgo纳米复合材料。 结构分析证实CDS @ rgo光催化剂中CD和RGO之间的强烈附着和相互作用,这导致较高的光催化效率(95.3%),具有优异的防腐蚀稳定性(几乎没有超过三个重复实验的效率) 可见光的纯CD。 CDS @ Rgo的独特杂交纳米结构可以有效地防止CD的自腐蚀,并促进电子孔对的分离。 因此,CDS @ Rgo的这些出色的光催化性能赋予了有机污染物降解的有希望的前景,并且该作品可以扩展到其他基于石墨烯的无机半导体复合材料。

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