Topological analysis of aromatic halogen/hydrogen bonds by electron charge density and electrostatic potentials |
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Authors: | Darío J. R. Duarte Margarita M. de las Vallejos Nélida M. Peruchena |
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Affiliation: | 1. Departamento de Química, Laboratorio de Estructura Molecular y Propiedades, área de Química Física, Facultad de Ciencias Exactas y Naturales y Agrimensura, Universidad Nacional del Nordeste, Avda. Libertad 5460, 3400, Corrientes, Argentina 2. Facultad Regional Resistencia, Universidad Tecnológica Nacional, French 414, 3500, Resistencia, Chaco, Argentina
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Abstract: | In this work, the intermolecular distribution of the electronic charge density in the aromatic hydrogen/halogen bonds is studied within the framework of the atoms in molecules (AIM) theory and the molecular electrostatic potentials (MEP) analysis. The study is carried out in nine complexes formed between benzene and simple lineal molecules, where hydrogen, fluorine and chlorine atoms act as bridge atoms. All the results are obtained at MP2 level theory using cc-pVTZ basis set. Attention is focused on topological features observed at the intermolecular region such as bond, ring and cage critical points of the electron density, as well as the bond path, the gradient of the density maps, molecular graphs and interatomic surfaces. The strength of the interaction increases in the following order: F⋅⋅⋅π < Cl⋅⋅⋅π < H⋅⋅⋅π. Our results show that the fluorine atom has the capability to interact with the π−cloud to form an aromatic halogen bond, as long as the donor group is highly electron withdrawing. The Laplacian topology allows us to state that the halogen atoms can act as nucleophiles as well as electrophiles, showing clearly their dual character. |
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