Jara-Cortés Jesús, Hernández-Trujillo Jesús
Departamento de Física y Química Teórica, Facultad de Química, UNAM, México City, 04510, México.
J Comput Chem. 2018 Jul 5;39(18):1103-1111. doi: 10.1002/jcc.25089. Epub 2017 Oct 26.
A number of aromatic, antiaromatic, and nonaromatic organic molecules was analyzed in terms of the contributions to the electronic energy defined in the quantum theory of atoms in molecules and the interacting quantum atoms method. Regularities were found in the exchange and electrostatic interatomic energies showing trends that are closely related to those of the delocalization indices defined in the theory. In particular, the CC interaction energies between bonded atoms allow to rationalize the energetic stabilization associated with the bond length alternation in conjugated polyenes. This approach also provides support to Clar's sextet rules devised for aromatic systems. In addition, the H⋯H bonding found in some of the aromatic molecules studied was of an attractive nature, according to the stabilizing exchange interaction between the bonded H atoms. © 2017 Wiley Periodicals, Inc.
根据分子中原子的量子理论和相互作用量子原子方法所定义的对电子能量的贡献,对一些芳香、反芳香和非芳香有机分子进行了分析。在交换能和静电原子间能量中发现了规律,这些规律显示出的趋势与该理论中定义的离域指数密切相关。特别地,键合原子之间的CC相互作用能有助于解释共轭多烯中与键长交替相关的能量稳定化。这种方法也为芳香体系所设计的克拉尔六隅体规则提供了支持。此外,根据所研究的一些芳香分子中键合H原子之间稳定的交换相互作用,发现其中的H⋯H键具有吸引性质。© 2017威利期刊公司。