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One-pot synthesis of CdS-reduced graphene oxide 3D composites with enhanced photocatalytic properties

机译:一锅法合成CdS还原的氧化石墨烯3D复合材料具有增强的光催化性能

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摘要

Nest-like CdS-reduced graphene oxide (CdS-rGO) composites were prepared through a one-pot solvothermal method in which ethylenediamine was used to reduce GO and control the morphology of the CdS, and L-cysteine was used as the sulfur source, reducing agent, and linker between the CdS and rGO. By examining the morphology, structure, and composition of the composites, it could be found that the nest-like CdS particles were decorated on the rGO sheet, and the addition of GO did not influence the crystal structure and shape of the nest-like CdS. Compared with pure CdS, the as-prepared CdS-rGO composites showed enhanced visible light absorption, extended surface area, and facilitated separation of photogenerated charges. Hence, the CdS-rGO composites exhibited improved photocatalytic activity and excellent photostability for the degradation of rhodamine B under visible light irradiation. By combining the good properties of rGO and three-dimensional structured CdS microparticles, the strategy presented in this study is expected to be useful in preparing highly efficient graphene-semiconductor composites for potential applications in various fields.
机译:通过一锅溶剂热法制备巢状CdS还原氧化石墨烯(CdS-rGO)复合材料,其中乙二胺用于还原GO和控制CdS的形态,L-半胱氨酸用作硫源,还原剂,以及CdS和rGO之间的连接子。通过检查复合材料的形貌,结构和组成,可以发现在rGO板上装饰了巢状CdS颗粒,并且GO的添加不影响巢状CdS的晶体结构和形状。 。与纯CdS相比,所制备的CdS-rGO复合材料显示出增强的可见光吸收,更大的表面积以及促进了光生电荷的分离。因此,CdS-rGO复合材料在可见光照射下对罗丹明B的降解表现出改善的光催化活性和优异的光稳定性。通过结合rGO和三维结构化CdS微粒的良好性能,本研究中提出的策略有望用于制备高效的石墨烯-半导体复合材料,以在各个领域中潜在应用。

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