4.5 Article

Kirkwood-Buff integrals from molecular simulation

期刊

FLUID PHASE EQUILIBRIA
卷 486, 期 -, 页码 21-36

出版社

ELSEVIER
DOI: 10.1016/j.fluid.2018.12.027

关键词

Kirkwood-Buff theory; Kirkwood-Buff integrals; Small system method; Solution theory; Molecular simulations; Density fluctuations

资金

  1. NWO Exacte Wetenschappen (Physical Sciences)
  2. Nederlandse Organisatie voor weten schappelijk Onderzoek (Netherlands Organization for Scientific research, NWO)
  3. NWO-CW
  4. Research Council of Norway [275754]

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The Kirkwood-Buff (KB) theory provides a rigorous framework to predict thermodynamic properties of isotropic liquids from the microscopic structure. Several thermodynamic quantities relate to KB integrals, such as partial molar volumes. KB integrals are expressed as integrals of RDFs over volume but can also be obtained from density fluctuations in the grand-canonical ensemble. Various methods have been proposed to estimate KB integrals from molecular simulation. In this work, we review the available methods to compute KB integrals from molecular simulations of finite systems, and particular attention is paid to finite-size effects. We also review various applications of KB integrals computed from simulations. These applications demonstrate the importance of computing KB integrals for relating findings of molecular simulation to macroscopic thermodynamic properties of isotropic liquids. (C) 2018 Elsevier B.V. All rights reserved.

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