| Literature DB >> 28643001 |
Chunwei Yang1, Zhe Shen1, Liang Wu1, Haiqiu Tang2, Lifeng Zhao2, FengLei Cao1, Huai Sun3,4.
Abstract
Coarse-grained force field (CGFF) methods were applied to study the self-assembly of sodium dodecyl sulfate with fragrance additives. The CGFF parameters were parameterized and validated using experimental and all-atom simulation data. Direct molecular dynamics simulations were carried out to characterize the initial aggregation, partitioning of fragrances, and chemical potentials of the surfactant and fragrance molecules in aggregates of different sizes. The equilibrium critical micelle concentrations (CMCs) and micelle size distributions, which could not be obtained by direct simulation, were predicted using the calculated chemical potentials in combination with a thermodynamic model. The predicted partitioning of fragrances, CMCs, micelle sizes, and micelle structures agree well with previously reported experimental data. Graphical abstract Enhancement of micelle size distribution using thermodynamic model.Entities:
Keywords: Additives; Coarse-grained; Self-assembly; Surfactant; Thermodynamic model
Year: 2017 PMID: 28643001 DOI: 10.1007/s00894-017-3364-2
Source DB: PubMed Journal: J Mol Model ISSN: 0948-5023 Impact factor: 1.810