4.4 Article

Kirkwood-Buff integrals of finite systems: shape effects

期刊

MOLECULAR PHYSICS
卷 116, 期 12, 页码 1573-1580

出版社

TAYLOR & FRANCIS LTD
DOI: 10.1080/00268976.2018.1434908

关键词

Kirkwood-Buff integrals; small-systems thermodynamics

资金

  1. Netherlands Organisation for Scientific Research (NWO Exacte Wetenschappen)
  2. NWO-CW

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The Kirkwood Buff (KB) theory provides an important connection between microscopic density fluctuations in liquids and macroscopic properties. Recently, KrUger eta/. derived equations for KB integrals for finite subvolumes embedded in a reservoir. Using molecular simulation of finite, systems, KB integrals can be computed either from density fluctuations inside such subvolumes, or from integrals of radial distribution functions (RDFs). Here, based on the second approach, we establish a framework to compute KB integrals for subvolumes with arbitrary convex shapes. This requires a geometric function w(x) which depends on the shape of the subvolume, and the relative position inside the subvolurne. We present a numerical method to compute to(x) based on Umbrella Sampling Monte Carlo (MC). We compute KB integrals of a liquid with a model RDF for subvolumes with different shapes. KB integrals approach the thermodynamic limit in the same way: for sufficiently large volumes, KB integrals are a linear function of area over volume, which is independent of the shape of the subvolume. [GRAPHICS] .

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