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Advances and challenges of single-atom catalysts in environmental catalysis

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ELSEVIER SCI LTD
DOI: 10.1016/j.coche.2023.100923

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Single-atom catalysts (SACs) have great potential in environmental catalysis due to their high atomic utilization efficiency, unique metal coordination structure, and metal-support interactions. As single-atom catalysis progresses into dual-atom catalysts, the introduction of more complex active sites and synergistic interactions presents new opportunities and challenges in heterogeneous catalysis. This review summarizes the current advantages of SACs and their applications in environmental catalysis, discusses the issues of stability and large-scale production, and provides an outlook on the future development of single-atom catalysis.
Single-atom catalysts (SACs) show great potential in environmental catalysis due to the maximized atomic utilization efficiency, the unique metal coordination structure, and metalsupport interactions. As single-atom catalysis is gradually processing into dual-atom catalysts, more complex active sites and synergistic interactions bring new opportunities and challenges in heterogeneous catalysis. We summarize the current advantages of SACs and their applications in environmental catalysis and discuss the current issues of stability and large-scale production. Finally, we provide an outlook on the future development of single-atom catalysis.

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