Wan Mengli, Cui Shizhong, Wei Wutao, Cui Siwen, Chen Kongyao, Chen Weihua, Mi Liwei
Center for Advanced Materials Research, Zhongyuan University of Technology Zhengzhou 450007 China
College of Chemistry and Molecular Engineering, Zhengzhou University Zhengzhou 450001 China
RSC Adv. 2019 Jan 18;9(5):2441-2450. doi: 10.1039/c8ra09331h.
CdS has attracted extensive attention in the photocatalytic degradation of wastewater due to its relatively narrow bandgap and various microstructures. Previous reports have focused on CdS coupled with other semiconductors to reduce the photocorrosion and improve the photocatalytic performance. Herein, a 3D hierarchical CdS/CuS nanostructure was synthesized by cation exchange using lily-like CdS as template. The heterojunction material completely inherits the special skeleton of the template material and optimizes the nano-scale morphology, and achieves the transformation from nanometer structure to quantum dots (QDs). The introduction of Cu ions not only tuned the band gap of the composites to promote the utilization of solar photons, more importantly, Fenton-like catalysis was combined into the degradation process. Compared with the experiments of organic dye degradation under different illumination conditions, the degradability of the CdS/CuS QDs is greatly superior to pure CdS. Therefore, the constructed CdS/CuS QDs further realized the optimization of degradation performance by the synergic effect of photo-catalysis and Fenton-like catalysis.
硫化镉(CdS)因其相对较窄的带隙和多样的微观结构,在光催化降解废水中受到了广泛关注。先前的报道主要集中在将CdS与其他半导体耦合,以减少光腐蚀并提高光催化性能。在此,以百合状CdS为模板,通过阳离子交换合成了一种三维分级CdS/CuS纳米结构。该异质结材料完全继承了模板材料的特殊骨架,优化了纳米级形态,并实现了从纳米结构到量子点(QDs)的转变。铜离子的引入不仅调节了复合材料的带隙以促进对太阳光子的利用,更重要的是,类芬顿催化被引入到降解过程中。与不同光照条件下有机染料降解的实验相比,CdS/CuS量子点的降解能力大大优于纯CdS。因此,构建的CdS/CuS量子点通过光催化和类芬顿催化的协同效应进一步实现了降解性能的优化。