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超越前沿分子轨道的核福井函数与电子福井函数之间的联系。

Connection between nuclear and electronic Fukui functions beyond frontier molecular orbitals.

作者信息

Oller Javier, Jaque Pablo

机构信息

Departamento de Química Orgánica y Fisicoquímica, Facultad de Ciencias Químicas y Farmacéuticas, Universidad de Chile, Sergio Livingstone 1007, Independencia, Santiago, Chile.

Centro de Modelamiento Molecular, Biofísica y Bioinformática, CM2B2, Universidad de Chile, Sergio Livingstone, 1007, Independencia, Santiago, Chile.

出版信息

J Chem Phys. 2023 Sep 28;159(12). doi: 10.1063/5.0169403.

Abstract

Based on the relationship between average local ionization energy Ī(r) and average local electron affinity Ā(r) with the electronic Fukui functions, i.e., f-(r) and f+(r), respectively, in this paper, we establish a connection between nuclear and electronic Fukui functions beyond frontier molecular orbitals. As a consequence of this connection, we obtain expressions of average nuclear Fukui functions interpreted as a variation of average nucleophilicity or electrophilicity (weighted by the electronic orbital Fukui functions) with respect to nuclear displacements, which goes beyond the highest occupied molecular orbital/or lowest unoccupied molecular orbital consideration. Furthermore, from this connection and considering the frontier molecular orbital approximation, we derive expressions of nuclear Fukui functions in terms of the atom-condensed electronic Fukui functions, which imply a locality in the chemical reactivity and could be used to study the variation of local nucleophilicity or electrophilicity with respect to nuclear displacements. Finally, this new way to interpret the nuclear Fukui function could be useful in the future to study the chemical reactivity related to molecular vibrations, internal rotations, bond dissociation, chemical reaction along the model of reaction coordinate, and so on.

摘要

基于平均局域电离能Ī(r)和平均局域电子亲和能Ā(r)分别与电子福井函数f-(r)和f+(r)之间的关系,本文建立了超越前线分子轨道的核福井函数与电子福井函数之间的联系。作为这种联系的结果,我们得到了平均核福井函数的表达式,该表达式被解释为平均亲核性或亲电性(由电子轨道福井函数加权)相对于核位移的变化,这超出了最高占据分子轨道/最低未占据分子轨道的考虑范围。此外,基于这种联系并考虑前线分子轨道近似,我们推导出了用原子凝聚电子福井函数表示的核福井函数表达式,这意味着化学反应性的局域性,并且可用于研究局部亲核性或亲电性相对于核位移的变化。最后,这种解释核福井函数的新方法未来可能有助于研究与分子振动、内旋转、键解离、沿反应坐标模型的化学反应等相关的化学反应性。

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