Atomically Precise Metal Clusters

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A timely and comprehensive book that summarizes the recent progress in the surface modification and self-assembly of metal nanoclusters.

Autorentext

Shuang-Quan Zang received his PhD degree in Chemistry from Nanjing University in 2006 under the supervision of Prof. Qingjin Meng. After postdoctoral research with Prof. Thomas C. W. Mak at The Chinese University of Hong Kong, he joined the College of Chemistry of Zhengzhou University, China. He received The National Science Fund for Distinguished Young Scholars in 2018. He is serving as Dean of College of Chemistry and Green Catalysis Center at Zhengzhou University. His current scientific interests focus on atomically-precise metal clusters, cluster-assembled materials, and functional metal-organic frameworks.


Klappentext

Thorough discussion on how surface modification and self-assembly play roles in the atomically precise formation and property tailoring of molecular clusters Atomically Precise Metal Clusters: Surface Engineering and Hierarchical Assembly summarizes and discusses the surface modification, assembly, and property tailoring of a wide variety of nanoclusters, including the well-explored metal clusters, addressing the structure-property relationships throughout. The atomic-level control in synthesis, new types of structures, and physical/chemical properties of nanoclusters are illustrated in various chapters. The controlled modification and assembly of metal nanoclusters is expected to have a major impact on future nanoscience research and other areas, with distinctive metal cluster-based function materials with precise structures uncovering exciting opportunities in both fundamental research and practical applications. Written by a highly qualified academic with significant research experience in the field, Atomically Precise Metal Clusters includes information on:

  • Ligand engineering and assembly of coinage metal nanoclusters such as gold, silver, and copper
  • Recent advances in post-modification of polyoxometalates and small transition metal chalcogenide superatom clusters
  • Synthesis and assembly of cadmium chalcogenide supertetrahedral clusters and modification and assembly of Fe-S clusters
  • Indium phosphide magic-sized clusters, ligand-tailoring platinum and palladium clusters, and metal oxo clusters (MOCs)
  • Enabling access to desired functions in metal clusters for catalysis, optics, biomedicine, and other fields through surface engineering and supramolecular assembly A timely and comprehensive book that summarizes the recent progress in the surface modification and self-assembly of metal nanoclusters, Atomically Precise Metal Clusters provides essential guidance for graduate students and advanced researchers in material science, chemistry, biomedicine, and other disciplines.

    Inhalt
    Chapter I Property Tailoring of Gold Clusters via Surface Engineering and Supramolecular Assembly
    Chapter II Modification and Assembly of Atomically-Precise Silver Clusters
    Chapter III Modification and Assembly of Copper Clusters
    Chapter IV Recent Advances in Post-modification of Polyoxometalates: Structures and Properties
    Chapter V Small Transition Metal Chalcogenide Superatom Clusters
    Chapter VI Synthesis and Assembly of Cadmium Chalcogenide Supertetrahedral Clusters
    Chapter VII The Modification and Assembly of Fe-S Clusters
    Chapter VIII Indium Phosphide Magic-Sized Clusters
    Chapter IX Ligand-Tailoring Platinum and Palladium Clusters
    Chapter X Metal Oxo Clusters (MOCs)
    Conclusion

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Weitere Informationen

  • Allgemeine Informationen
    • GTIN 09783527352104
    • Auflage 1. Auflage
    • Sprache Englisch
    • Genre Chemie
    • Lesemotiv Verstehen
    • Größe H150mm x B23mm x T176mm
    • Jahr 2024
    • EAN 9783527352104
    • Format Fester Einband
    • ISBN 978-3-527-35210-4
    • Veröffentlichung 12.08.2024
    • Titel Atomically Precise Metal Clusters
    • Autor Shuang-Quan Zang
    • Untertitel Surface Engineering and Hierarchical Assembly
    • Gewicht 666g
    • Herausgeber Wiley-VCH GmbH
    • Anzahl Seiten 336

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