Literature DB >> 27337546

Beyond Born-Mayer: Improved Models for Short-Range Repulsion in ab Initio Force Fields.

Mary J Van Vleet1, Alston J Misquitta2, Anthony J Stone3, J R Schmidt1.   

Abstract

Short-range repulsion within intermolecular force fields is conventionally described by either Lennard-Jones (A/r(12)) or Born-Mayer (A exp(-Br)) forms. Despite their widespread use, these simple functional forms are often unable to describe the interaction energy accurately over a broad range of intermolecular distances, thus creating challenges in the development of ab initio force fields and potentially leading to decreased accuracy and transferability. Herein, we derive a novel short-range functional form based on a simple Slater-like model of overlapping atomic densities and an iterated stockholder atom (ISA) partitioning of the molecular electron density. We demonstrate that this Slater-ISA methodology yields a more accurate, transferable, and robust description of the short-range interactions at minimal additional computational cost compared to standard Lennard-Jones or Born-Mayer approaches. Finally, we show how this methodology can be adapted to yield the standard Born-Mayer functional form while still retaining many of the advantages of the Slater-ISA approach.

Year:  2016        PMID: 27337546     DOI: 10.1021/acs.jctc.6b00209

Source DB:  PubMed          Journal:  J Chem Theory Comput        ISSN: 1549-9618            Impact factor:   6.006


  8 in total

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8.  Accurate determination of solvation free energies of neutral organic compounds from first principles.

Authors:  Leonid Pereyaslavets; Ganesh Kamath; Boris Fain; Oleg Butin; Alexey Illarionov; Michael Olevanov; Igor Kurnikov; Serzhan Sakipov; Igor Leontyev; Ekaterina Voronina; Tyler Gannon; Grzegorz Nawrocki; Mikhail Darkhovskiy; Ilya Ivahnenko; Alexander Kostikov; Jessica Scaranto; Maria G Kurnikova; Suvo Banik; Henry Chan; Michael G Sternberg; Subramanian K R S Sankaranarayanan; Brad Crawford; Jeffrey Potoff; Michael Levitt; Roger D Kornberg
Journal:  Nat Commun       Date:  2022-01-20       Impact factor: 14.919

  8 in total

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