Máximo-Canadas Matheus, Oliveira Roberta Siqueira Soldaini, Oliveira Marco Aurélio Souza, Borges Itamar
Departamento de Química, Instituto Militar de Engenharia (IME), Praça General Tibúrcio, 80, Rio de Janeiro, RJ 22290-270, Brazil.
Departamento de Engenharia de Defesa, Instituto Militar de Engenharia (IME), Praça General Tibúrcio, 80, Rio de Janeiro, RJ 22290-270, Brazil.
ACS Omega. 2025 Apr 3;10(14):14157-14175. doi: 10.1021/acsomega.4c11451. eCollection 2025 Apr 15.
Aromatic compounds are energetically stable and have low reactivity, but an aromaticity concept is difficult to establish because it cannot be measured. For this reason, different descriptors have been developed to rationalize and quantify this phenomenon. Given that cyclic electron delocalization is an essential property of aromatic compounds, in this work, we propose six new aromatic descriptors based on Stone's distributed multipole analysis (DMA) to partition the molecular electron density into electric multipoles localized on different sites of a molecule. The new aromatic descriptors are based on different components of the DMA quadrupole electric moment tensor , the first term of the DMA multipole expansion having contributions from the out-of-plane electron density. The proposed descriptors are straightforward to obtain because the DMA method is implemented on different popular electronic structure packages. For users of Gaussian, the formatted checkpoint file with the calculated molecular electron density is used as input for the GDMA2 program of Stone to compute the necessary components. A Python script is provided to calculate the proposed descriptors. The computer protocol for determining the -based descriptors in either way is presented. To assess the performance of the aromaticity descriptors, we used 12 tests of the Girona benchmark developed by the Solà group involving different distortions of benzene, substitutions, complexation, ring size dependence, atom size dependence, heteroatomic species, Clar systems, and fulvenes. The descriptors normalized by the corresponding benzene values presented the most consistent results. The correct aromaticity trends of the six normalized new indices were predicted entirely in 65% of the cases; for 22%, most trends were predicted and only failed utterly in 13%. The failed cases were related to the molecular symmetry, which led to the partial cancellation of the tensor components, thereby affecting the aromatic descriptors and, in some cases, due to a contamination of sigma electrons. Our proposal joins others to contribute to understanding the important and complex chemical concept of aromaticity.
芳香族化合物能量稳定且反应活性低,但芳香性概念难以确立,因为它无法测量。因此,人们开发了不同的描述符来合理化和量化这一现象。鉴于环状电子离域是芳香族化合物的一个基本特性,在本工作中,我们基于斯通的分布式多极分析(DMA)提出了六个新的芳香性描述符,以将分子电子密度划分为定域在分子不同位点上的电多极子。新的芳香性描述符基于DMA四极电矩张量的不同分量,DMA多极展开的第一项来自面外电子密度的贡献。所提出的描述符很容易获得,因为DMA方法在不同的流行电子结构软件包上都有实现。对于高斯软件的用户,带有计算出的分子电子密度的格式化检查点文件用作斯通的GDMA2程序的输入,以计算必要的分量。提供了一个Python脚本用于计算所提出的描述符。给出了以任何一种方式确定基于该分量的描述符的计算机协议。为了评估芳香性描述符的性能,我们使用了索拉小组开发的吉罗纳基准测试中的12个测试,涉及苯的不同变形、取代、络合、环大小依赖性、原子大小依赖性、杂原子种类、克拉尔体系和富烯。通过相应苯值归一化的描述符给出了最一致的结果。在65%的情况下,六个归一化新指标的正确芳香性趋势完全被预测出来;在22%的情况下,大多数趋势被预测出来,只有13%的情况完全失败。失败的情况与分子对称性有关,这导致张量分量部分抵消,从而影响芳香性描述符,在某些情况下,还与σ电子的污染有关。我们的提议与其他提议一起有助于理解重要而复杂的芳香性化学概念。