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Rahbari, A. (author), Hens, R. (author), Ramdin, M. (author), Moultos, O. (author), Dubbeldam, D. (author), Vlugt, T.J.H. (author)
In this paper, we review recent advances in the Continuous Fractional Component Monte Carlo (CFCMC) methodology and present a historic overview of the most important developments that have led to this method. The CFCMC method has gained attention for Monte Carlo simulations of adsorption at high loading, and phase and reaction equilibria of...
journal article 2020
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Rahbari, A. (author), Hens, R. (author), Dubbeldam, D. (author), Vlugt, T.J.H. (author)
The CFCMC simulation methodology considers an expanded ensemble to solve the problem of low insertion/deletion acceptance probabilities in open ensembles. It allows for a direct calculation of the chemical potential by binning of the coupling parameter λ and using the probabilities p(λ = 0) and p(λ = 1), which require extrapolation. Here, we...
journal article 2019
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Rahbari, A. (author), Hens, R. (author), Nikolaidis, I.K. (author), Poursaeidesfahani, A. (author), Ramdin, M. (author), Economou, I. G. (author), Moultos, O. (author), Dubbeldam, D. (author), Vlugt, T.J.H. (author)
An alternative method for calculating partial molar excess enthalpies and partial molar volumes of components in Monte Carlo (MC) simulations is developed. This method combines the original idea of Frenkel, Ciccotti, and co-workers with the recent continuous fractional component Monte Carlo (CFCMC) technique. The method is tested for a system...
journal article 2018