Issue 6, 2022

La@[La5&B30]0/−/2−: endohedral trihedral metallo-borospherenes with spherical aromaticity

Abstract

It is well-known that transition-metal-doping induces dramatic changes in the structures and bonding of small boron clusters, as demonstrated by the newly observed perfect inverse sandwich D8h [La(η8-B8)La] and D9h [La(η9-B9)La]. Based on extensive global minimum searches and first-principles theory calculations, we predict herein the possibility of perfect endohedral trihedral metallo-borospherene D3h La@[La5&B30] (1, 3A′1) and its monoanion Cs La@[La5&B30] (2, 2A′) and dianion D3h La@[La5&B30]2− (3, 1A′1). These La-doped boron clusters are composed of three inverse sandwich La(η8-B8)La on the waist and two inverse sandwich La(η9-B9)La on the top and bottom which share one apex La atom at the center and six periphery B2 units between neighboring η8-B8 and η9-B9 rings, with three octo-coordinate La atoms and two nona-coordinate La atoms as integrated parts of the cage surface. Detailed adaptive natural density partitioning (AdNDP) and iso-chemical shielding surface (ICSS) analyses indicate that La@[La5&B30]0/−/2− (1/2/3) are spherically aromatic in nature. The one-dimensional nanowire La4B21 (4, P31m) constructed from D3h La@[La5&B30] (1) along the C3 axis of the system appears to be metallic. The IR and Raman spectra of La@[La5&B30] (1) and photoelectron spectroscopy of the slightly distorted Cs La@[La5&B30] (2) are theoretically simulated to facilitate their spectroscopic characterizations.

Graphical abstract: La@[La5&B30]0/−/2−: endohedral trihedral metallo-borospherenes with spherical aromaticity

Supplementary files

Article information

Article type
Paper
Submitted
10 Dec 2021
Accepted
24 Jan 2022
First published
25 Jan 2022

Phys. Chem. Chem. Phys., 2022,24, 3918-3923

La@[La5&B30]0/−/2−: endohedral trihedral metallo-borospherenes with spherical aromaticity

M. Ao, X. Lu, Y. Mu, W. Zan and S. Li, Phys. Chem. Chem. Phys., 2022, 24, 3918 DOI: 10.1039/D1CP05644A

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