We employ the adaptive resolution approach AdResS, in its recently developed Grand Canonical-like version (GC-AdResS) [H. Wang, C. Hartmann, C. Schütte, and L. Delle Site, Phys. Rev. X3, 011018 (2013)], to calculate the excess chemical potential, μ 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 μ ex corresponds to the process of standard initial equilibration of the system; this implies that, independently of the specific aim of the study, μ ex , for each molecular species, is automatically calculated every time a GC-AdResS simulation is performed
The Adaptive Resolution Scheme (AdResS) is a hybrid scheme that allows to treat a molecular system w...
Complex soft matter systems can be efficiently studied with the help of adaptive resolution simulati...
Computer simulations have proven to be a powerful tool in soft matter research since they have helpe...
We employ the adaptive resolution approach AdResS, in its recently developed Grand Canonical-like ve...
n this work, we provide a detailed theoretical analysis, supported by numerical tests, of the reliab...
We investigate the role of the thermodynamic (TD) force, as an essential and sufficient technical in...
In a previous paper, a precise relation between the chemical potential of a fully atomistic simulati...
The adaptive resolution simulation (AdResS) technique couples regions with different molecular resol...
The chemical potential of a component in a solution is defined as the free energy change as the amou...
Complex soft matter systems can be efficiently studied with the help of adaptive resolution simulati...
This article deals with the molecular dynamics simulation of open systems that can exchange energy a...
Many popular methods for the calculation of chemical potentials rely on the insertion of test partic...
The grand molecular dynamics (GMD) method has been extended and applied to examine the density depen...
This thesis work is devoted to the conceptual and technical development of the Adaptive Resolution S...
The AdResS method in molecular dynamics (MD) allows, in a grand canonical (GC) fashion, to change on...
The Adaptive Resolution Scheme (AdResS) is a hybrid scheme that allows to treat a molecular system w...
Complex soft matter systems can be efficiently studied with the help of adaptive resolution simulati...
Computer simulations have proven to be a powerful tool in soft matter research since they have helpe...
We employ the adaptive resolution approach AdResS, in its recently developed Grand Canonical-like ve...
n this work, we provide a detailed theoretical analysis, supported by numerical tests, of the reliab...
We investigate the role of the thermodynamic (TD) force, as an essential and sufficient technical in...
In a previous paper, a precise relation between the chemical potential of a fully atomistic simulati...
The adaptive resolution simulation (AdResS) technique couples regions with different molecular resol...
The chemical potential of a component in a solution is defined as the free energy change as the amou...
Complex soft matter systems can be efficiently studied with the help of adaptive resolution simulati...
This article deals with the molecular dynamics simulation of open systems that can exchange energy a...
Many popular methods for the calculation of chemical potentials rely on the insertion of test partic...
The grand molecular dynamics (GMD) method has been extended and applied to examine the density depen...
This thesis work is devoted to the conceptual and technical development of the Adaptive Resolution S...
The AdResS method in molecular dynamics (MD) allows, in a grand canonical (GC) fashion, to change on...
The Adaptive Resolution Scheme (AdResS) is a hybrid scheme that allows to treat a molecular system w...
Complex soft matter systems can be efficiently studied with the help of adaptive resolution simulati...
Computer simulations have proven to be a powerful tool in soft matter research since they have helpe...