Catão Anderson José Lopes, López-Castillo Alejandro
Departamento de Química, Universidade Federal de São Carlos (UFSCar), São Carlos, SP, 13560-970, Brazil.
J Mol Model. 2017 Apr;23(4):119. doi: 10.1007/s00894-017-3279-y. Epub 2017 Mar 15.
In this work, the spectroscopic information, stability and aromaticity of the boron-nitrogen azulene and naphthalene molecules are provided by the use of CC2 (geometry optimization, dipole moment, UV-vis spectrum calculations) and DFT (vibrational spectrum and NMR calculations) methodologies. One isomer of the investigated boron-nitrogen naphthalene (boroazanaphthalene) and two isomers of boron-nitrogen azulene, 1,3,4,6,8-pentaaza-2,3a,5,7,8a-pentaboraazulene (BN-azulene) and 2,3a,5,7,8a-pentaaza-1,3,4,6,8- pentaboraazulene (NB-azulene), are stable systems. However, these molecules have different properties, i.e., different stability, dipole moment, and aromaticity based on the NICS approach. BN-naphthalene has a high dipole moment magnitude showing high polar character, while naphthalene is apolar. BN- and NB-azulene are weakly polar, while ordinary azulene is highly polar in character. Also, substitution of C atoms by B and N atoms decreases the aromaticity. In the case of NB-azulene, the seven-membered ring has anti-aromaticity behavior while both rings of BN-azulene exhibit aromaticity. We expect that the new theoretical data provided in this work will be useful in identifying and characterizing experimentally the compounds investigated, and in helping our understanding of the chemistry of boron-nitrogen molecules. Graphical abstract Boron-nitrogen alternating analogs of azulene. Spectral distinction between isomers.
在这项工作中,通过使用CC2(几何优化、偶极矩、紫外可见光谱计算)和DFT(振动光谱和核磁共振计算)方法,提供了硼氮薁和萘分子的光谱信息、稳定性和芳香性。所研究的硼氮萘(硼氮杂萘)的一种异构体以及硼氮薁的两种异构体,即1,3,4,6,8-五氮杂-2,3a,5,7,8a-五硼薁(BN-薁)和2,3a,5,7,8a-五氮杂-1,3,4,6,8-五硼薁(NB-薁),是稳定的体系。然而,这些分子具有不同的性质,即基于核独立化学位移(NICS)方法的不同稳定性、偶极矩和芳香性。BN-萘具有较高的偶极矩大小,显示出高极性特征,而萘是非极性的。BN-薁和NB-薁是弱极性的,而普通薁具有高极性特征。此外,用B和N原子取代C原子会降低芳香性。在NB-薁的情况下,七元环具有反芳香性,而BN-薁的两个环都表现出芳香性。我们期望这项工作中提供的新理论数据将有助于通过实验鉴定和表征所研究的化合物,并有助于我们理解硼氮分子的化学性质。图形摘要:薁的硼氮交替类似物。异构体之间的光谱区别。