English

Chemical potential of liquids and mixtures via Adaptive Resolution Simulation

Statistical Mechanics 2014-11-11 v5 Biological Physics Chemical Physics Computational Physics

Abstract

We employ the adaptive resolution approach AdResS, in its recently developed Grand Canonical-like version (GC-AdResS) [Wang et al. Phys.Rev.X 3, 011018 (2013)], to calculate the excess chemical potential, μex\mu^{ex}, of various liquids and mixtures. We compare our results with those obtained from full atomistic simulations using the technique of thermodynamic integration and show a satisfactory agreement. In GC-AdResS the procedure to calculate μex\mu^{ex} corresponds to the process of standard initial equilibration of the system; this implies that, independently of the specific aim of the study, μex\mu^{ex}, for each molecular species, is automatically calculated every time a GC-AdResS simulation is performed.

Keywords

Cite

@article{arxiv.1311.6982,
  title  = {Chemical potential of liquids and mixtures via Adaptive Resolution Simulation},
  author = {Animesh Agarwal and Han Wang and Christof Schütte and Luigi Delle Site},
  journal= {arXiv preprint arXiv:1311.6982},
  year   = {2014}
}

Comments

16 pages, 6 figures, 1 table