| Literature DB >> 31721418 |
Osvaldo Yañez1, Rodrigo Báez-Grez1, Jorge Garza2, Sudip Pan3, Jorge Barroso4, Alejandro Vásquez-Espinal1,4, Gabriel Merino4, William Tiznado1.
Abstract
Through delicate tuning of the electronic structure, we report herein a rational design of seventeen new putative global minimum energy structures containing a planar tetra- or pentacoordinate carbon atom embedded in an aromatic hydrocarbon. These structures are the result of replacing three consecutive hydrogen atoms of an aromatic hydrocarbon by less electronegative groups, forming a multicenter σ-bond with the planar hypercoordinate carbon atom and participating in the π-electron delocalization. This strategy that maximizes both mechanical and electronic effects through aromatic architectures can be extended to several molecular combinations to achieve new and diverse compounds containing planar hypercoordinate carbon centers.Entities:
Keywords: Aromaticity; bonding analysis; induced magnetic field; planar hypercoordinate carbon; theoretical chemistry
Year: 2019 PMID: 31721418 DOI: 10.1002/cphc.201900998
Source DB: PubMed Journal: Chemphyschem ISSN: 1439-4235 Impact factor: 3.102