School of Chemical and Environmental Engineering, Wuyi University, Jiangmen 529020, China.
School of Chemical and Environmental Engineering, Wuyi University, Jiangmen 529020, China.
J Colloid Interface Sci. 2017 May 1;493:198-205. doi: 10.1016/j.jcis.2017.01.023. Epub 2017 Jan 7.
A series of heterostructured ZnFeO/TiO-nanotube arrays (NTAs) with remarkable visible-light photoelectrocatalytic (PEC) activity were successfully prepared via a two-step process of anodization and impregnation, followed by annealing. The structure and morphology of the as-prepared ZnFeO/TiO-NTAs samples, PEC degradation abilities and photoelectrochemical performances, as well as long-term stabilities toward degradation of methyl orange (MO) solution under visible-light irradiation were deeply investigated. Results showed that forming a heterojunction by combination of TiO-NTAs with ZnFeO successfully extended the absorption edge of TiO-NTAs to visible-light region. Among all the ZnFeO/TiO-NTAs samples, the 2-ZnFeO/TiO-NTAs sample, named ZT(2), obtained the best PEC activity and the highest photocurrent density under visible-light irradiation. Moreover, the ZT(2) sample retained a good reproducibility and high stability after 20days of PEC degradation. The outstanding visible-light PEC activity and photocurrent response of the ZT(2) sample were attributed to the proper amount of ZnFeO nanoparticles loaded onto the TiO-NTAs, which not only dramatically improved the visible-light absorption of TiO-NTAs, but also assisted the separation of photo-induced electron-hole pairs and reduced their recombination by forming a ZnFeO/TiO-NTAs heterojunction. The reaction mechanism responsible for the enhanced visible-light PEC performance of the ZnFeO/TiO-NTAs heterostructure was also discussed.
一系列具有显著可见光光电催化(PEC)活性的 ZnFeO/TiO-纳米管阵列(NTAs)通过两步法成功制备,包括阳极氧化和浸渍,然后进行退火。对所制备的 ZnFeO/TiO-NTAs 样品的结构和形态、PEC 降解能力和光电化学性能,以及在可见光照射下降解甲基橙(MO)溶液的长期稳定性进行了深入研究。结果表明,TiO-NTAs 与 ZnFeO 结合形成异质结,成功将 TiO-NTAs 的吸收边缘扩展到可见光区域。在所有的 ZnFeO/TiO-NTAs 样品中,2-ZnFeO/TiO-NTAs 样品(命名为 ZT(2))在可见光照射下表现出最佳的 PEC 活性和最高的光电流密度。此外,ZT(2)样品在 20 天的 PEC 降解后保持了良好的重现性和高稳定性。ZT(2)样品具有出色的可见光 PEC 活性和光电流响应归因于适量的 ZnFeO 纳米颗粒负载在 TiO-NTAs 上,这不仅极大地提高了 TiO-NTAs 的可见光吸收,而且通过形成 ZnFeO/TiO-NTAs 异质结,有助于光生电子-空穴对的分离并减少它们的复合。还讨论了 ZnFeO/TiO-NTAs 异质结构增强可见光 PEC 性能的反应机制。