da Silva Rodrigo R, Ramalho Teodorico C, Santos Joana M, Figueroa-Villar J Daniel
Departamento de Química, Instituto Militar de Engenharia, Praça General Tibúrcio, 80, CEP 22290-070, Rio de Janeiro, Brazil.
J Phys Chem A. 2006 Jan 26;110(3):1031-40. doi: 10.1021/jp054434y.
We carried out Hartree-Fock (HF) and density functional theory calculations for 61 compounds, the conjugated bases of carboxylic acids, phenols, and alcohols, and analyzed their acid-base behavior using molecular orbital (MO) energies and their dependence on solvent effects. Despite the well-known correlation between highest-occupied MO (HOMO) energies and pKa, we observed that HOMO energies are inadequate to describe the acid-base behavior of these compounds. Therefore, we established a criterion to identify the best frontier MO for describing pKa values and also to understand why the HOMO approach fails. The MO that fits our criterion provided very good correlations with pKa values, much better than those obtained by HOMO energies. Since they are the frontier molecular orbitals that drive the acid-base reactions in each compound, they were called frontier effective-for-reaction MOs, or FERMOs. By use of the FERMO concept, the reactions that are HOMO driven, and those that are not, can be better explained, independently from the calculation method used, as both HF and Kohn-Sham methodologies lead to the same FERMO.
我们对61种化合物(羧酸、酚和醇的共轭碱)进行了Hartree-Fock(HF)和密度泛函理论计算,并使用分子轨道(MO)能量及其对溶剂效应的依赖性分析了它们的酸碱行为。尽管最高占据分子轨道(HOMO)能量与pKa之间存在众所周知的相关性,但我们发现HOMO能量不足以描述这些化合物的酸碱行为。因此,我们建立了一个标准来确定用于描述pKa值的最佳前沿分子轨道,并理解HOMO方法失败的原因。符合我们标准的分子轨道与pKa值具有非常好的相关性,比通过HOMO能量获得的相关性要好得多。由于它们是驱动每种化合物中酸碱反应的前沿分子轨道,因此被称为前沿反应有效分子轨道,或FERMOs。通过使用FERMO概念,可以更好地解释由HOMO驱动的反应和非HOMO驱动的反应,而与所使用的计算方法无关,因为HF和Kohn-Sham方法都能得到相同的FERMO。