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Brick-CFCMC: Open Source Software for Monte Carlo Simulations of Phase and Reaction Equilibria Using the Continuous Fractional Component Method.


ABSTRACT: We present a new molecular simulation code, Brick-CFCMC, for performing Monte Carlo simulations using state-of-the-art simulation techniques. The Continuous Fractional Component (CFC) method is implemented for simulations in the NVT/NPT ensembles, the Gibbs Ensemble, the Grand-Canonical Ensemble, and the Reaction Ensemble. Molecule transfers are facilitated by the use of fractional molecules which significantly improve the efficiency of the simulations. With the CFC method, one can obtain phase equilibria and properties such as chemical potentials and partial molar enthalpies/volumes directly from a single simulation. It is possible to combine trial moves from different ensembles. This enables simulations of phase equilibria in a system where also a chemical reaction takes place. We demonstrate the applicability of our software by investigating the esterification of methanol with acetic acid in a two-phase system.

SUBMITTER: Hens R 

PROVIDER: S-EPMC7312392 | biostudies-literature | 2020 Jun

REPOSITORIES: biostudies-literature

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Brick-CFCMC: Open Source Software for Monte Carlo Simulations of Phase and Reaction Equilibria Using the Continuous Fractional Component Method.

Hens Remco R   Rahbari Ahmadreza A   Caro-Ortiz Sebastián S   Dawass Noura N   Erdős Máté M   Poursaeidesfahani Ali A   Salehi Hirad S HS   Celebi Alper T AT   Ramdin Mahinder M   Moultos Othonas A OA   Dubbeldam David D   Vlugt Thijs J H TJH  

Journal of chemical information and modeling 20200421 6


We present a new molecular simulation code, Brick-CFCMC, for performing Monte Carlo simulations using state-of-the-art simulation techniques. The Continuous Fractional Component (CFC) method is implemented for simulations in the <i>NVT</i>/<i>NPT</i> ensembles, the Gibbs Ensemble, the Grand-Canonical Ensemble, and the Reaction Ensemble. Molecule transfers are facilitated by the use of fractional molecules which significantly improve the efficiency of the simulations. With the CFC method, one can  ...[more]

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