Hu Ximin, Han Wenyuan, Zhang Manqi, Li Degang, Sun Hongqi
School of Chemistry and Chemical Engineering, Shandong University of Technology, Zibo, 255000, People's Republic of China.
School of Chemistry and Chemical Engineering, Lanzhou University, Lanzhou, 730000, People's Republic of China.
Environ Sci Pollut Res Int. 2022 Aug;29(37):56379-56392. doi: 10.1007/s11356-022-19810-x. Epub 2022 Mar 25.
Carbon quantum dots (CQDs) can be used to modify TiO to extend the light absorption threshold and enhance its photocatalytic efficiency. In this study, different amounts of CQDs modified TiO (CQDs-x/TiO) were synthesized by a facile, mild, and environmental friendly hydrothermal method at a low temperature. The physicochemical properties were investigated by a variety of advanced characterization techniques. It was found that the anchoring of CQDs endowed the CQDs-x/TiO with a large specific surface area, which is beneficial to adsorb more organic pollutants and promote the rate of photocatalytic oxidation. The XRD results also showed that the in situ formation of CQDs on the surface of TiO made the crystallinity of TiO tend to be complete. Among these photocatalysts, CQDs-20/TiO showed the highest pollutant removal efficiency under visible light irradiations. The classical quenching tests revealed that the O, OH, and hole (h) were the oxidizing species. Among them, h was the primary factor contributing to the degradation. The electrochemical tests showed that the anchoring of CQDs on TiO increased the photocurrent by about four times, as compared with the pure TiO. In particular, the cyclic voltammetry results showed that the photo-generated electrons of CQDs were freer to transfer to TiO under visible light irradiations, promoting the separation of photo-generated electrons and holes. This study explains adequately why the CQDs/TiO system has a good photocatalytic degradation of organic compounds.
碳量子点(CQDs)可用于修饰二氧化钛(TiO)以扩展光吸收阈值并提高其光催化效率。在本研究中,通过简便、温和且环境友好的低温水热法合成了不同量的CQDs修饰的TiO(CQDs-x/TiO)。采用多种先进表征技术对其物理化学性质进行了研究。结果发现,CQDs的锚定赋予了CQDs-x/TiO较大的比表面积,这有利于吸附更多有机污染物并提高光催化氧化速率。XRD结果还表明,TiO表面原位形成的CQDs使TiO的结晶度趋于完整。在这些光催化剂中,CQDs-20/TiO在可见光照射下表现出最高的污染物去除效率。经典猝灭试验表明,O、OH和空穴(h⁺)是氧化物种。其中,h⁺是导致降解的主要因素。电化学测试表明,与纯TiO相比,CQDs在TiO上的锚定使光电流增加了约四倍。特别是,循环伏安法结果表明,在可见光照射下,CQDs的光生电子更自由地转移到TiO上,促进了光生电子和空穴的分离。本研究充分解释了CQDs/TiO体系对有机化合物具有良好光催化降解性能的原因。