School of Civil & Environmental Engineering, Nanyang Technological University, Singapore 639798, Singapore.
J Hazard Mater. 2013 Oct 15;261:214-23. doi: 10.1016/j.jhazmat.2013.07.034. Epub 2013 Jul 24.
Multifunctional nanocomposites (GO-TiO2-Ag) integrating 2D GO sheets, 1D TiO2 nanorods and 0D Ag nanoparticles were synthesized via a facile two-phase method and characterized by various analytical techniques including TEM, EDS and XRD. The GO-TiO2-Ag nanocomposites demonstrate remarkably enhanced photocatalytic activities in degrading AO 7 and phenol under solar irradiation compared with GO-TiO2 and GO-Ag. They also exhibit excellent intrinsic antibacterial activity toward Escherichia coli, as well as significantly enhanced photo-biocidal capability over GO-TiO2 and GO-Ag. Through systematically investigating the influence of Ag content in the nanocomposites for their photocatalytic activities, it indicates that the optimal Ag content in the GO-TiO2-Ag nanocomposites varies for dye degradation and for phenol/bacterial degradation with different mechanisms. The superior photocatalytic activities under solar irradiation and the easy recovery make the GO-TiO2-Ag nanocomposites a good promising candidate for water purification.
多功能纳米复合材料(GO-TiO2-Ag)通过简便的两相结合方法合成,整合了二维 GO 片、一维 TiO2 纳米棒和零维 Ag 纳米粒子,并通过 TEM、EDS 和 XRD 等各种分析技术进行了表征。与 GO-TiO2 和 GO-Ag 相比,GO-TiO2-Ag 纳米复合材料在太阳光照射下降解 AO 7 和苯酚时表现出显著增强的光催化活性。它们对大肠杆菌也表现出优异的固有抗菌活性,并且在光生物杀灭能力方面明显优于 GO-TiO2 和 GO-Ag。通过系统研究纳米复合材料中 Ag 含量对其光催化活性的影响,表明对于不同机制的染料降解和苯酚/细菌降解,GO-TiO2-Ag 纳米复合材料中最佳的 Ag 含量有所不同。在太阳光照射下具有优越的光催化活性和易于回收的特点,使 GO-TiO2-Ag 纳米复合材料成为水净化的良好候选材料。