Y@Cu15: a novel spherical aromatic 18-ce bare superatomic molecular cluster

Abstract

Finding prototypical species that expand the structural and electronic features of molecular clusters is of interest for expanding the understanding of well-defined structures with particular stability. Here, we investigate the Y@Cu15 binary cluster using a modified basin-hopping (MBH) structure search method, revealing a stable configuration with a yttrium atom encapsulated in a low-symmetry Cu15 cage exhibiting C2v geometry, displaying different surface faces. The interaction energy ensuring Y–Cu15 encapsulation amounts to −220.4 kcal mol−1, mainly driven from electrostatic and orbital contributions, with orbital interactions dominated by charge transfer from 5s-Y→Cu15 and “back-donation” from 4d-Y←Cu15 orbitals, resulting in a sizable net charge transfer of −6.0|e| to yttrium. This charge distribution creates electron-deficient Cu sites analogous to the σ-hole regions, suggesting catalytic potential. The electronic structure of the cluster follows the 1S21P61D10 superatomic shell model, fulfilling Hirsch's 2(N + 1)2 rule for spherical aromaticity. Through-space nuclear independent chemical shift (NICS) analysis confirmed the presence of a shielding cone characteristic of aromatic species, supported by electron density of delocalized bond (EDDBG) analysis, which showed extensive electron delocalization consistent with spherical aromaticity. These findings establish Y@Cu15 as a novel, medium-sized spherical aromatic superatomic cluster with promising reactive sites for catalysis, thereby expanding the understanding of superatomic cluster chemistry and encouraging further exploration of its reactivity and applications.

Graphical abstract: Y@Cu15: a novel spherical aromatic 18-ce bare superatomic molecular cluster

Supplementary files

Article information

Article type
Paper
Submitted
24 Feb 2026
Accepted
28 Apr 2026
First published
15 May 2026

Phys. Chem. Chem. Phys., 2026, Advance Article

Y@Cu15: a novel spherical aromatic 18-ce bare superatomic molecular cluster

P. L. Rodríguez-Kessler and A. Muñoz-Castro, Phys. Chem. Chem. Phys., 2026, Advance Article , DOI: 10.1039/D6CP00667A

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