| Literature DB >> 28734296 |
Noriyuki Yoshii1, Yuki Nimura2, Kazushi Fujimoto2, Susumu Okazaki2.
Abstract
The surface structure and its fluctuation of spherical micelles were investigated using a series of density correlation functions newly defined by spherical harmonics and Legendre polynomials based on the molecular dynamics calculations. To investigate the influence of head-group charges on the micelle surface structure, ionic sodium dodecyl sulfate and nonionic octaethyleneglycol monododecylether (C12E8) micelles were investigated as model systems. Large-scale density fluctuations were observed for both micelles in the calculated surface static structure factor. The area compressibility of the micelle surface evaluated by the surface static structure factor was tens-of-times larger than a typical value of a lipid membrane surface. The structural relaxation time, which was evaluated from the surface intermediate scattering function, indicates that the relaxation mechanism of the long-range surface structure can be well described by the hydrostatic approximation. The density fluctuation on the two-dimensional micelle surface has similar characteristics to that of three-dimensional fluids near the critical point.Entities:
Year: 2017 PMID: 28734296 DOI: 10.1063/1.4994698
Source DB: PubMed Journal: J Chem Phys ISSN: 0021-9606 Impact factor: 3.488