Molecular dynamics simulation of sodium dodecyl sulfate micelle in water: Micellar structural characteristics and counterion distribution

被引:317
作者
Bruce, CD [1 ]
Berkowitz, ML [1 ]
Perera, L [1 ]
Forbes, MDE [1 ]
机构
[1] Univ N Carolina, Dept Chem, Venable & Kenan Labs, Chapel Hill, NC 27514 USA
关键词
D O I
10.1021/jp013616z
中图分类号
O64 [物理化学(理论化学)、化学物理学];
学科分类号
070304 ; 081704 ;
摘要
An all-atom 5 nanosecond molecular dynamics simulation of a water-solvated micelle containing 60 sodium dodecyl sulfate monomers was performed. Structural properties such as the radius of gyration, eccentricity, micellar size, accessible surface area, dihedral angle distribution, carbon atom distribution, and the orientation of the monomers toward the micelle center of mass were evaluated. The results indicate a stable micellar system over the duration of the simulation. Evaluation of the structure and motion of the sodium counterions show (1) a long equilibration time (I nanosecond) is required to achieve a stable distribution of counterions and (2) approximately 25% of the sodium ions are located in the first shell and 50% are located in the first two shells of the micelle during the course of the simulation. The structure of the micelle oxygen-sodium ion radial distribution function reveals two distinct peaks which divide the counterions into those close to the micelle (first shell) those far from the micelle (bulk) and those between (second shell). Finally, values of the diffusion coefficient for sodium ions followed a decreasing trend for ions in the bulk of the micellar system (D = 1.9 x 10(-5) cm(2/)s), ions in the second shell of the micelle (D = 1.4 x 10(-5) cm(2)/S), and those in the first shell of the micelle (D = 1.0 x 10(-5) cm %).
引用
收藏
页码:3788 / 3793
页数:6
相关论文
共 41 条
[21]   Effects of Cs and Na ions on the interfacial properties of dodecyl sulfate solutions [J].
Kim, DH ;
Oh, SG ;
Cho, CG .
COLLOID AND POLYMER SCIENCE, 2001, 279 (01) :39-45
[22]  
Kuhn H, 1998, PROG COLL POL SCI S, V111, P158
[23]   Solvation and counterion-distribution of sodium octanoate micelles studied by molecular dynamics simulations [J].
Kuhn, H ;
Rehage, H .
BERICHTE DER BUNSEN-GESELLSCHAFT-PHYSICAL CHEMISTRY CHEMICAL PHYSICS, 1997, 101 (10) :1493-1500
[24]   The phenomenon of water penetration into sodium octanoate micelles studied by molecular dynamics computer simulation [J].
Kuhn, H ;
Breitzke, B ;
Rehage, H .
COLLOID AND POLYMER SCIENCE, 1998, 276 (09) :824-832
[25]   INTERPRETATION OF PROTEIN STRUCTURES - ESTIMATION OF STATIC ACCESSIBILITY [J].
LEE, B ;
RICHARDS, FM .
JOURNAL OF MOLECULAR BIOLOGY, 1971, 55 (03) :379-&
[26]   MOLECULAR-DYNAMICS SIMULATION ANALYSIS OF A SODIUM DODECYL-SULFATE MICELLE IN AQUEOUS-SOLUTION - DECREASED FLUIDITY OF THE MICELLE HYDROCARBON INTERIOR [J].
MACKERELL, AD .
JOURNAL OF PHYSICAL CHEMISTRY, 1995, 99 (07) :1846-1855
[27]   Structure and dynamics of the TIP3P, SPC, and SPC/E water models at 298 K [J].
Mark, P ;
Nilsson, L .
JOURNAL OF PHYSICAL CHEMISTRY A, 2001, 105 (43) :9954-9960
[28]   Molecular dynamics simulation of the kinetics of spontaneous micelle formation [J].
Marrink, SJ ;
Tieleman, DP ;
Mark, AE .
JOURNAL OF PHYSICAL CHEMISTRY B, 2000, 104 (51) :12165-12173
[29]   Microstructure of protein-surfactant complexes in gel and solution -: An NMR relaxation study [J].
Morén, AK ;
Nydén, M ;
Söderman, O ;
Khan, A .
LANGMUIR, 1999, 15 (17) :5480-5488
[30]   Interaction between starburst dendrimers and SDS micelles studied by continuous-wave and pulsed electron spin resonances [J].
Ottaviani, MF ;
Daddi, R ;
Brustolon, M ;
Turro, NJ ;
Tomalia, DA .
APPLIED MAGNETIC RESONANCE, 1997, 13 (3-4) :347-363