Stabilizing a three-center single-electron metal–metal bond in a fullerene cage

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Date
2021
Volume
Issue
20
Journal
Chemical Science
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Publisher
Cambridge : RSC
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Abstract

Trimetallic carbide clusterfullerenes (TCCFs) encapsulating a quinary M3C2 cluster represent a special family of endohedral fullerenes with an open-shell electronic configuration. Herein, a novel TCCF based on a medium-sized rare earth metal, dysprosium (Dy), is synthesized for the first time. The molecular structure of Dy3C2@Ih(7)-C80 determined by single crystal X-ray diffraction shows that the encapsulated Dy3C2 cluster adopts a bat ray configuration, in which the acetylide unit C2 is elevated above the Dy3 plane by ∼1.66 Å, while Dy–Dy distances are ∼3.4 Å. DFT computational analysis of the electronic structure reveals that the endohedral cluster has an unusual formal charge distribution of (Dy3)8+(C2)2−@C806− and features an unprecedented three-center single-electron Dy–Dy–Dy bond, which has never been reported for lanthanide compounds. Moreover, this electronic structure is different from that of the analogous Sc3C2@Ih(7)-C80 with a (Sc3)9+(C2)3−@C806− charge distribution and no metal–metal bonding.

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Jin, F., Xin, J., Guan, R., Xie, X.-M., Chen, M., Zhang, Q., et al. (2021). Stabilizing a three-center single-electron metal–metal bond in a fullerene cage (Cambridge : RSC). Cambridge : RSC. https://doi.org//10.1039/D1SC00965F
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CC BY-NC 3.0 Unported