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Application of nanoscale CeO2 as Fenton-like catalyst in the field of environment and bioscience

作者:Xu Han, Xiang Chu, Jing Xu, Zhao Meng, Lin Peng, Lingling Zhang, Xiao Wang · 发表于:Chinese Journal of Analytical Chemistry · 年份:2025 · DOI:10.1016/j.cjac.2025.100501 · 被引用次数:4 · 研究领域:Advanced Nanomaterials in Catalysis、Electrochemical sensors and biosensors、Advanced Photocatalysis Techniques

Fenton reaction has been regarded as one of the most potent ways to cost-efficiently degrade organic contaminants and cure cancer by inducing cell apoptosis and necrosis. However, commercial Fe-base catalysts and natural enzymes are suffering from high costs and low durability. Exploring a new catalyst for reducing cost and avoiding secondary pollution is demanding. Recent research illustrates that CeO 2 owns a specific oxygen vacancy structure and Ce 3+ /Ce 4+ redox cycle, which is thought to be the origin of Fenton-like reaction activities. Significantly, inducing heteroatoms promotes the concentration of oxygen vacancy and Ce 3+ ions, and the electrons transfer between Ce and heteroatoms accelerates the redox cycles. The broad reaction pH value and low biotoxicity endow CeO 2 with enormous potential in organic pollutants’ disposal and artificial enzyme for healthcare. Because of their excellent stability, Ce-base catalysts are more accessible for storage and transformation than natural enzymes. Meanwhile, electro-/photochemistry technologies are believed to reduce subsequent pollution and potentially be applied in biology fields. This review focuses on the Fenton-like reaction process and its application in environmental engineering and life science.