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Updated: Jan 8, 2026

Synthesis of Information-bearing Peptoids and their Sequence-directed Dynamic Covalent Self-assembly
Published on: February 6, 2020
Ensamblaje de Icosaedros de Oro Protegidos por Ligandos en Moléculas Superatómicas Cíclicas con Aromaticidad
Chen Wang1, Jiahao Gao1, Dan Li1
1Department of Chemistry, Anhui University, Hefei 230601, P. R. China.
Abstract:
Gold clusters with high symmetry are promising building blocks for cluster assemblies due to their distinctive electronic structure and tunable physicochemical properties. Herein, two cyclic superatomic molecules, (Ir@Au9)6(AuCl2)6Cl12 and (Ir@Au9)10(AuCl2)10Cl20, were constructed via a bottom-up assembly strategy involving face-sharing of Au3 triangles based on the structure of icosahedral W@Au12 clusters. Chemical bonding analyses reveal that the 30e (Ir@Au9)6 and 50e (Ir@Au9)10 cores in these two clusters are analogues of C6H6 and C10H10, respectively, with both exhibiting superatomic aromaticity. Furthermore, by replacing Ir with Os, the obtained (Os@Au9)10(AuCl2)10Cl20 cluster can be regarded as an electronic analogue of the C10 ring, featuring dual aromaticity with five in-plane and five out-of-plane delocalized superatomic orbitals. Given the large size of the superatom, the 40e (Os@Au9)10 core exhibits alternating superatomic single and triple bonds, similar to the C18 ring. This work extends the concept of aromaticity from the molecule scale to superatomic-molecule architectures and provides a practicable bottom-up assemble approach for constructing cyclic clusters with superatomic aromaticity.
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