4.5 Article

Modeling Organochlorine Compounds and the σ-Hole Effect Using a Polarizable Multipole Force Field

Journal

JOURNAL OF PHYSICAL CHEMISTRY B
Volume 118, Issue 24, Pages 6456-6465

Publisher

AMER CHEMICAL SOC
DOI: 10.1021/jp411671a

Keywords

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Funding

  1. NIH [R01GM59802]
  2. Robert A. Welch Foundation [F-1390, F-1691]
  3. French state funds
  4. ANR within the Investissements d'Avenir program [ANR-11-IDEX-0004-02]
  5. National Institutes of Health [GM 106137]

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The charge distribution of halogen atoms on organochlorine compounds can be highly anisotropic and even display a so-called sigma-hole, which leads to strong halogen bonds with electron donors. In this paper, we have systematically investigated a series of chloromethanes with one to four chloro substituents using a polarizable multipole-based molecular mechanics model. The atomic multipoles accurately reproduced the ab initio electrostatic potential around chloromethanes, including CCl4, which has a prominent sigma-hole on the Cl atom. The van der Waals parameters for Cl were fitted to the experimental density and heat of vaporization. The calculated hydration free energy, solvent reaction fields, and interaction energies of several homo- and heterodimer of chloromethanes are in good agreement with experimental and ab initio data. This study suggests that sophisticated electrostatic models, such as polarizable atomic multipoles, are needed for accurate description of electrostatics in organochlorine compounds and halogen bonds, although further improvement is necessary for better transferability.

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