Leyssens Tom, Geerlings Paul, Peeters Daniel
Laboratoire de Chimie Quantique, Bâtiment Lavoisier, Université catholique de Louvain, place Louis Pasteur 1, B-1348 Louvain-la-Neuve, Belgium.
J Phys Chem A. 2005 Nov 3;109(43):9882-9. doi: 10.1021/jp053068f.
The electronegativity of groups placed in a molecular environment is obtained using CCSD calculations of the electron affinity and ionization energy. A point charge model is used as an approximation of the molecular environment. The electronegativity values obtained in the presence of a point charge model are compared to the isolated group property to estimate the importance of the external potential on the group's electronegativity. The validity of the "group in molecule" electronegativities is verified by comparing EEM (electronegativity equalization method) charge transfer values to the explicitly calculated natural population analysis (NPA) ones, as well as by comparing the variation in electronegativity between the isolated functional group and the functional group in the presence of a modeled environment with the variation based on a perturbation expansion of the chemical potential.
处于分子环境中的基团的电负性是通过对电子亲和能和电离能进行耦合簇单双激发(CCSD)计算得到的。点电荷模型被用作分子环境的近似。将在点电荷模型存在下获得的电负性值与孤立基团的性质进行比较,以评估外部势对基团电负性的重要性。通过将电负性均衡方法(EEM)的电荷转移值与明确计算的自然布居分析(NPA)值进行比较,以及将孤立官能团与存在模拟环境的官能团之间的电负性变化与基于化学势微扰展开的变化进行比较,来验证“分子中的基团”电负性的有效性。