Modelling of potentials for interparticle interactions between methanol molecules

Peculiarities of interparticle interactions between methanol molecules in the methanol vapor are investigated. The bare potential is considered as a sum of repulsive, dispersive and electrostatic forces. It is supposed that H-bond is of electrostatic nature (the irreducible contribution caused by ov...

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書目詳細資料
發表在:Condensed Matter Physics
Main Authors: N.P. Malomuzh, M.V. Timofeev
格式: Article
語言:英语
出版: Yukhnovskii Institute for Condensed Matter Physics of the National Academy of Sciences of Ukraine 2017-12-01
主題:
在線閱讀:https://doi.org/10.5488/CMP.20.43301
實物特徵
總結:Peculiarities of interparticle interactions between methanol molecules in the methanol vapor are investigated. The bare potential is considered as a sum of repulsive, dispersive and electrostatic forces. It is supposed that H-bond is of electrostatic nature (the irreducible contribution caused by overlapping of electronic shells is unessential). The dispersive interaction is approximated with London’s formula, the electrostatic interaction is modelled by a multipole expansion up to dipole-octupole contribution. The multipole moments are assumed to be equal to their experimental values or to quantum chemical calculations. The repulsion is modelled by power potential, whose parameters are fitted to the second virial coefficient and to the parameters of dimers. Along with the bare potential, the averaged potential of interparticle interaction is analyzed. It is shown that the repulsive potential has an exponent n=28. The multipole potential, presented in this paper, is scrupulously compared with the potential known as the OPLS.
ISSN:1607-324X
2224-9079