Abstract
Photoelectron spectroscopy combined with quantum chemistry has been a powerful approach to elucidate the structures and bonding of size-selected boron clusters (Bn ), revealing a prevalent planar world that laid the foundation for borophenes. Investigations of metal-doped boron clusters not only lead to novel structures but also provide important information about the metal-boron bonds that are critical to understanding the properties of boride materials. The current review focuses on recent advances in transition-metal-doped boron clusters, including the discoveries of metal-boron multiple bonds and metal-doped novel aromatic boron clusters. The study of the RhB and RhB2 O clusters led to the discovery of the first quadruple bond between boron and a transition-metal atom, whereas a metal-boron triplebond was found in ReB2 O and IrB2 O. The ReB4 cluster was shown to be the first metallaborocycle with Mobius aromaticity, and the planar ReB6 cluster was found to exhibit aromaticity analogous to metallabenzenes.
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Chen, T. T., Cheung, L. F., & Wang, L. S. (2022). Probing the Nature of the Transition-Metal-Boron Bonds and Novel Aromaticity in Small Metal-Doped Boron Clusters Using Photoelectron Spectroscopy. Annual Review of Physical Chemistry. Annual Reviews Inc. https://doi.org/10.1146/annurev-physchem-082820-113041
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