Guo Zehui, Wang Guoqing, Fu Haiqing, Wang Peiqing, Liao Jianhe, Wang Aimin
State Key Laboratory of Marine Resource Utilization in South China Sea, School of Materials Science and Engineering, Hainan University No. 58, Renmin Avenue Haikou 570228 P. R. China
Sichuan Sunvea New Materials Co., Ltd. GuangAn 638500 China
RSC Adv. 2020 Jul 10;10(44):26133-26141. doi: 10.1039/d0ra02076a. eCollection 2020 Jul 9.
This study reports a new method for photocatalysts to degrade organic dyes on organic semiconductors. A novel strategy is reported to form TiO nanorod (NR)/polydopamine (PDA) electrodes with a photoelectric polymerization strategy for PDA (pep-PDA) to produce cocatalytic electrodes. Amperometric - curves and UV-vis diffuse reflectance spectra were recorded and showed that compared with traditional self-polymerization (sp-PDA) and electropolymerization (ep-PDA), TiO NR/pep-PDA exhibited an enhanced photocatalytic activity under visible light. As expected, TiO NR/pep-PDA showed a significant improvement for the degradation of methylene blue (MB) under visible light, which can be attributed to the strong absorption of PDA in the visible light region and the more complete and uniform coverage of the TiO NRs by the pep-PDA film. This study not only proposes a novel and highly efficient way to load PDA on TiO NRs but also provides useful insights for the loading of other photocatalysts on organic semiconductors to degrade organic dyes.
本研究报道了一种光催化剂在有机半导体上降解有机染料的新方法。据报道,一种新颖的策略是采用聚多巴胺(PDA)的光电聚合策略(pep-PDA)形成TiO纳米棒(NR)/聚多巴胺(PDA)电极,以制备共催化电极。记录了安培曲线和紫外可见漫反射光谱,结果表明,与传统的自聚合(sp-PDA)和电聚合(ep-PDA)相比,TiO NR/pep-PDA在可见光下表现出增强的光催化活性。正如预期的那样,TiO NR/pep-PDA在可见光下对亚甲基蓝(MB)的降解有显著改善,这可归因于PDA在可见光区域的强吸收以及pep-PDA膜对TiO NRs更完整和均匀的覆盖。本研究不仅提出了一种在TiO NRs上负载PDA的新颖且高效的方法,还为在有机半导体上负载其他光催化剂以降解有机染料提供了有用的见解。