光催化
纳米棒
材料科学
化学稳定性
降级(电信)
化学气相沉积
土霉素
化学工程
煅烧
纳米技术
光化学
化学
催化作用
有机化学
抗生素
电信
生物化学
计算机科学
工程类
作者
Dongmei Zhao,Xinyao Wang,Liang Wang,Jingzhen Wang,Xu Wang,Weipeng Cheng
出处
期刊:Materials
[Multidisciplinary Digital Publishing Institute]
日期:2024-05-22
卷期号:17 (11): 2488-2488
摘要
Antibiotic residues have been found to have potentially harmful effects on ecological and human health. Carbon nitride-based photocatalysts have widely focused on antibiotic photocatalytic degradation. Herein, we prepared Fe-modified g-C3N4 nanorod bunches (FCNBs) using chemical vapor co-deposition. Specifically, through the process of calcination, a blend of urea and chlorophyllin sodium iron salt underwent an intriguing transformation, resulting in the integration of Fe into the framework of the g-C3N4 nanorod cluster. The resulting photocatalyst exhibited remarkable stability and superior dispersibility. The prepared FCNBs had a unique structure, which was beneficial for increasing light absorption. Furthermore, the Fe species formed a chemical coordination with the g-C3N4 matrix, thereby altering the electronic structure of the matrix. This modification facilitated charge transfer, prolonged the carrier lifetime, and enhanced light absorption, all of which significantly increased the photocatalytic activity. The oxytetracycline degradation efficiency of FCNBs was 82.5%, and they demonstrated outstanding stability in cycle trials. This work introduces a promising photocatalyst for the degradation of antibiotics.
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