铈
光催化
二氧化钛
材料科学
兴奋剂
量子点
复合材料
二氧化碳
化学
纳米技术
光电子学
冶金
催化作用
有机化学
作者
Bo‐Rong Huang,Pei‐Kai Hsu,Alexandre Gloter,Chi‐Liang Chen,Jenn‐Ming Song,Shih‐Yun Chen
标识
DOI:10.1002/adsu.202500283
摘要
Abstract In this study, cerium‐doped carbon quantum dots (Ce‐CDs) are first synthesized by hydrothermal decomposition of organic compounds mixed with different contents of cerium nitrate hexahydrate. The analysis results indicate that cerium doping effectively reduces the CD core's oxygen‐ and nitrogen‐related structural defects. As the doping concentration increases, the incorporation of cerium further induces different defects in carbon quantum dots. Ultraviolet photoemission spectroscopy and Low Energy Inverse Photoemission Spectroscopy show Ce‐CDs have similar band gap energy but different Fermi levels. Second, Ce‐CDs are combined with TiO 2 to prepare TiO 2 /Ce‐CDs composites, which demonstrate strong optical properties and enhanced photocatalytic performance due to the structural modification of Ce‐CDs. These composites improve visible light photocatalytic performance by improving the charge separation of electron‐hole pairs. The main active species include hydroxyl radicals on the TiO₂ surface and superoxide anions on Ce‐CDs. The best performance is observed in the TiO 2 /0.5Ce‐CDs composite, with a reaction rate constant as high as 0.087 min −1 under visible light. This study demonstrates the potential of Ce doping on carbon quantum dots and their advanced photocatalytic applications.
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