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      Linear Combination of Atomic Dipoles to Calculate the Bond and Molecular Dipole Moments of Molecules and Molecular Liquids.

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          Abstract

          We report a linear combination of atomic dipole (LCAD) method for calculating the bond dipole moments of molecules. We show that the LCAD method reproduces the known molecular dipole moments of small to large molecules with a small error with respect to experimental and benchmark ab initio calculations, and molecular dipole distributions of bulk water that agree with maximally localized Wannier functions. The bond dipole moments derived from LCAD are also chemically interpretable in terms of the trend in bond ionicity in going from neutral to charged molecules. Moreover, the LCAD method accurately captures the influence of electric fields, supported by the correct trend in the change of the dipole moment under a uniform external electric field. The better grounding of bond dipole calculations indicates that it should also serve as a useful approach to bond dipole-field models used in catalysis or to reconstruct the small dipole of a H-terminated graphene flake.

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          Author and article information

          Journal
          J Phys Chem Lett
          The journal of physical chemistry letters
          American Chemical Society (ACS)
          1948-7185
          1948-7185
          Dec 30 2021
          : 12
          : 51
          Affiliations
          [1 ] Chemical Sciences Division, Lawrence Berkeley National Laboratory, University of California, Berkeley, Berkeley, California 94720, United States.
          [2 ] Kenneth S. Pitzer Center for Theoretical Chemistry, University of California, Berkeley, Berkeley, California 94720, United States.
          [3 ] Department of Chemistry, University of California, Berkeley, Berkeley, California 94720, United States.
          [4 ] Department of Chemical and Biomolecular Engineering, University of California, Berkeley, Berkeley, California 94720, United States.
          [5 ] Department of Bioengineering, University of California, Berkeley, Berkeley, California 94720, United States.
          Article
          10.1021/acs.jpclett.1c03476
          34936765
          72e5b738-3fbf-4c9d-a9ae-0a1ed7eade3f
          History

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