| Literature DB >> 29473272 |
Xue Dong1, Said Jalife2, Alejandro Vásquez-Espinal2, Estefanía Ravell2, Sudip Pan2, José Luis Cabellos2,3, Wei-Yan Liang1, Zhong-Hua Cui1, Gabriel Merino2.
Abstract
An intriguing structural transition from the quasi-planar form of B12 cluster upon the interaction with lithium atoms is reported. High-level computations show that the lowest energy structures of LiB12 , Li2 B12 , and Li3 B12 have quasi-planar (Cs ), tubular (D6d ), and cage-like (Cs ) geometries, respectively. The energetic cost of distorting the B12 quasi-planar fragment is overcompensated by an enhanced electrostatic interaction between the Li cations and the tubular or cage-like B12 fragments, which is the main reason of such drastic structural changes, resulting in the smallest tubular (Li2 B12 ) and cage-like (Li3 B12 ) boron structures reported to date.Entities:
Keywords: boron clusters; electrostatic interactions; high-level computations; structural transitions; tubular structures
Year: 2018 PMID: 29473272 DOI: 10.1002/anie.201800976
Source DB: PubMed Journal: Angew Chem Int Ed Engl ISSN: 1433-7851 Impact factor: 15.336