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March 25, 2026NPG Asia Materials4 citationsOpen Access

Superatomic molecules: natural and non-natural atom-like bonding between superatoms

KIKatsuhiro Isozaki

Key Points

  • The aim is to understand the bonding and stability in superatomic molecules formed by metallic nanoclusters.
  • Reviewed synthesis and structural characterization of anisotropic clusters
  • Classified superatomic molecules based on bonding features
  • Analyzed relationships between molecular geometry and electronic structure
  • Highlighted unique stabilization mechanisms in superatomic molecules compared to conventional counterparts
  • Identified superatomic molecular orbitals analogous to atomic orbitals
  • Discussed potential applications and functional properties of superatomic molecules

Abstract

Abstract Superatomic molecules, formed by the fusion or combination of spherical metal nanoclusters (superatoms), have emerged as a novel framework for understanding the stability of anisotropic metal nanoclusters. Advances in the synthesis and structural characterization of these anisotropic clusters have provided valuable insights into the classification of superatomic molecules and the development of a corresponding bonding theory. This review offers a qualitative perspective on the relationship between molecular geometry and electronic structure in superatomic molecules, focusing on superatomic molecular orbitals formed through the linear combination of individual superatomic orbitals—analogous to atomic orbitals in natural molecules. Unique stabilization features, not observed in conventional molecular systems, are also highlighted. Furthermore, the review discusses potential functional properties of superatomic molecules in the context of future applications.

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Cite This Study

Katsuhiro Isozaki (2026) studied this question.

synapsesocial.com/papers/69c37b54b34aaaeb1a67d974https://doi.org/10.1038/s41427-026-00636-9
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