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      Atomically Precise Noble Metal Nanoclusters as Efficient Catalysts: A Bridge between Structure and Properties

      1 , 1 , 2 , 1
      Chemical Reviews
      American Chemical Society (ACS)

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          Abstract

          Improving the knowledge of the relationship between structure and properties is fundamental in catalysis. Recently, researchers have developed a variety of well-controlled methods to synthesize atomically precise metal nanoclusters (NCs). NCs have shown high catalytic activity and unique selectivity in many catalytic reactions, which are related to their ultrasmall size, abundant unsaturated active sites, and unique electronic structure different from that of traditional nanoparticles (NPs). More importantly, because of their definite structure and monodispersity, they are used as model catalysts to reveal the correlation between catalyst performance and structure at the atomic scale. Therefore, this review aims to summarize the recent progress on NCs in catalysis and provide potential theoretical guidance for the rational design of high-performance catalysts. First a brief summary of the synthetic strategies and characterization methods of NCs is provided. Then the primary focus of this review-the model catalyst role of NCs in catalysis-is illustrated from theoretical and experimental perspectives, particularly in electrocatalysis, photocatalysis, photoelectric conversion, and catalysis of organic reactions. Finally, the main challenges and opportunities are examined for a deep understanding of the key catalytic steps with the goal of expanding the catalytic application range of NCs.

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          Author and article information

          Journal
          Chemical Reviews
          Chem. Rev.
          American Chemical Society (ACS)
          0009-2665
          1520-6890
          March 22 2019
          March 22 2019
          Affiliations
          [1 ]Department of Chemistry and Center for Atomic Engineering of Advanced Materials, Anhui Province Key Laboratory of Chemistry for Inorganic/Organic Hybrid Functionalized Materials, Anhui University, Hefei, Anhui 230601, China
          [2 ]Université de Bordeaux, ISM, UMR CNRS 5255, Talence 33405 Cedex, France
          Article
          10.1021/acs.chemrev.8b00726
          30901198
          098c86d3-cf5e-4b0d-9154-bfdca723d0ee
          © 2019
          History

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