Coarse graining of nonbonded inter-particle potentials using automatic simplex optimization to fit structural properties
- 15 October 2000
- journal article
- Published by AIP Publishing in The Journal of Chemical Physics
- Vol. 113 (15), 6264-6275
- https://doi.org/10.1063/1.1308542
Abstract
We implemented a coarse-graining procedure to construct mesoscopic models of complex molecules. The final aim is to obtain better results on properties depending on slow modes of the molecules. Therefore the number of particles considered in molecular dynamics simulations is reduced while conserving as many properties of the original substance as possible. We address the problem of finding nonbonded interaction parameters which reproduce structural properties from experiment or atomistic simulations. The approach consists of optimizing automatically nonbonded parameters using the simplex algorithm to fit structural properties like the radial distribution function as target functions. Moreover, any mix of structural and thermodynamic properties can be included in the target function. Different spherically symmetric inter-particle potentials are discussed. Besides demonstrating the method for Lennard--Jones liquids, it is applied to several more complex molecular liquids such as diphenyl carbonate, tetrahydrofurane, and monomers of poly(isoprene).Comment: 24 pages, 3 tables, 14 figures submitted to the Journal of Chemical Physics (JCPKeywords
All Related Versions
This publication has 21 references indexed in Scilit:
- Bridging the Gap Between Atomistic and Coarse-Grained Models of Polymers: Status and PerspectivesPublished by Springer Nature ,2000
- Segregation of Chain Ends Is a Weak Contributor to Increased Mobility at Free Polymer SurfacesThe Journal of Physical Chemistry B, 1998
- Simulation of polymer melts. I. Coarse-graining procedure for polycarbonatesActa Polymerica, 1998
- Dissipative particle dynamics: Bridging the gap between atomistic and mesoscopic simulationThe Journal of Chemical Physics, 1997
- Reverse Mapping of Coarse-Grained Polyethylene Chains from the Second Nearest Neighbor Diamond Lattice to an Atomistic Model in Continuous SpaceMacromolecules, 1997
- Coarse-Graining of a Fluid and its Relation with Dissipative Particle Dynamics and Smoothed Particle DynamicInternational Journal of Modern Physics C, 1997
- Accelerated equilibration of polymer melts by time-coarse-grainingThe Journal of Chemical Physics, 1995
- Structure-property correlation of polymers, a Monte Carlo approachMacromolecules, 1991
- On the construction of coarse-grained models for linear flexible polymer chains: Distribution functions for groups of consecutive monomersThe Journal of Chemical Physics, 1991
- The bond fluctuation method: a new effective algorithm for the dynamics of polymers in all spatial dimensionsMacromolecules, 1988