Development of Coarse Grained Models for Long Chain Alkanes
ORAL
Abstract
Modeling aggregation in aqueous solution is a challenge for molecular simulations as it involves long time scales, a range of length scales, and the correct balance of hydrophobic and hydrophilic interactions. We have developed a coarse-grained model fast enough for the rapid testing of molecular structures for their aggregation properties. This model, using the Stillinger-Weber potential, achieves efficiency through a reduction in the number of interaction sites and the use of short-ranged interactions. The model can be two to three orders of magnitude more efficient than conventional all atom simulations, yet through a careful parameterization process and the use of many-body interactions can be remarkably accurate. We have developed models for long chain alkanes in water that reproduce the thermodynamics and structure of water-alkane and liquid alkane systems.
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Authors
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Gaurav Gyawali
Univ of New Orleans
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Samuel Sternfield
Univ of New Orleans
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In Chul Hwang
Univ of New Orleans
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Steven Rick
University of New Orleans, Univ of New Orleans
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Revati Kumar
Louisiana State Univ - Baton Rouge, Louisiana State University