4.7 Review

Emerging Single-Atom Catalysts/Nanozymes for Catalytic Biomedical Applications

期刊

ADVANCED HEALTHCARE MATERIALS
卷 11, 期 6, 页码 -

出版社

WILEY
DOI: 10.1002/adhm.202101682

关键词

cancer therapy; catalytic mechanisms; redox homeostasis; ROS; single-atom catalysts

资金

  1. National Natural Science Foundation of China [21673037]
  2. Open Project of Guangxi Key Laboratory of HighIncidence-Tumor Prevention Treatment
  3. Key Laboratory of HighIncidence-Tumor Prevention & Treatment, Ministry of Education [GKE-KF202001]

向作者/读者索取更多资源

Single-atom catalysts are atomically dispersed nanozymes with high atom utilization and excellent catalytic performance. However, undesired aggregation effect can occur during activation and reaction processes, requiring appropriate substrates to stabilize their catalytic activity.
Single-atom catalysts (SACs) are a type of atomically dispersed nanozymes with the highest atom utilization, which employ low-coordinated single atoms as the catalytically active sites. SACs not only inherit the merits of traditional nanozymes, but also hold high catalytic activity and superb catalytic selectivity, which ensure their tremendous application potential in environmental remediation, energy storage and conversion, chemical industry, nanomedicine, etc. Nevertheless, undesired aggregation effect of single atoms during preactivation and reaction processes is significantly enhanced owing to the high surface free energy of single atoms. In this case, appropriate substrates are requisite to prevent the aggregation event through the powerful interactions between the single atoms and the substrates, thereby stabilizing the high catalytic activity of the catalysts. In this review, the synthetic methods and characterization approaches of SACs are first described. Then the application cases of SACs in nanomedicine are summarized. Finally, the current challenges and future opportunities of the SACs in nanomedicine are outlined. It is hoped that this review may have implications for furthering the development of new SACs with improved biophysicochemical properties and broadened biomedical applications.

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