School of Civil and Environmental Engineering, Nanyang Technological University, 50 Nanyang Avenue, Singapore 639798, Singapore.
J Hazard Mater. 2012 Aug 30;229-230:209-16. doi: 10.1016/j.jhazmat.2012.05.099. Epub 2012 Jun 4.
Novel hierarchical TiO(2)/CdS "spindle-like" composites with uniform distribution of CdS nanocrystals on nanoporous TiO(2) mesocrystals were successfully prepared by hydrothermal and hot-injection methods. In this work, the optimal mass ratio of Ti/Cd is determined to be 2 of as-synthesized TiO(2)/CdS composites. This TiO(2)/CdS composite exhibits excellent photocatalytic activity in the degradation of Rhodamine B (RhB) and photocatalytic reaction constant is 10 times higher than that of TiO(2), 3.5 times higher than that of CdS and higher than other TiO(2)/CdS composites with different amount of Ti/Cd mass ratio. In addition, TiO(2)/CdS with optimal amount of CdS kills 99.9% of Escherichia coli in 10 min under visible-light irradiation, which shows significant higher efficiency than pure TiO(2), CdS and other TiO(2)/CdS composites. The excellent performances of this hierarchical composite are ascribed to its outstanding properties, including large specific surface area (BET), high crystallinity of oriented single-crystal-like nanoporous TiO(2) mesocrystals for charge transfer, retarded recombination of photogenerated electron-hole pairs via isolating electrons and holes in two different materials, and extended photo response of this hierarchical composite to the visible region. Considering all these superior properties and abilities, this hierarchical TiO(2)/CdS "spindle-like" composite will show great potential for applications in the water purification field.
具有均匀分布的 CdS 纳米晶的新型分级 TiO2/CdS“纺锤状”复合材料通过水热和热注入方法成功制备。在这项工作中,确定合成的 TiO2/CdS 复合材料中 Ti/Cd 的最佳质量比为 2。这种 TiO2/CdS 复合材料在 Rhodamine B(RhB)的降解中表现出优异的光催化活性,光催化反应常数比 TiO2 高 10 倍,比 CdS 高 3.5 倍,比其他不同 Ti/Cd 质量比的 TiO2/CdS 复合材料都高。此外,在可见光照射下,具有最佳 CdS 量的 TiO2/CdS 在 10 分钟内杀死了 99.9%的大肠杆菌,其效率明显高于纯 TiO2、CdS 和其他 TiO2/CdS 复合材料。这种分级复合材料具有优异的性能,归因于其突出的性质,包括大的比表面积(BET)、取向单晶状纳米多孔 TiO2 介晶的高结晶度有利于电荷转移、通过在两种不同材料中隔离电子和空穴来延缓光生电子-空穴对的复合,以及这种分级复合材料对可见光区域的扩展光响应。考虑到所有这些优越的性能和能力,这种分级 TiO2/CdS“纺锤状”复合材料将在水净化领域显示出巨大的应用潜力。