Depto. de Física-GIT-CAC, Comisión Nacional de Energía Atómica, Av. Gral Paz 1499, (1650) San Martín, Buenos Aires, Argentina.
J Chem Phys. 2010 Feb 21;132(7):075101. doi: 10.1063/1.3302133.
The dynamical properties of amphiphilics in Newton black films, as well as those of the water confined between the two charged hydrophilic surfaces, have been calculated via a series of molecular dynamic calculations in several films with different water contents. A charged semiflexible amphiphilic model and the TIP5P model of water are used in our simulations [Z. Gamba, J. Chem. Phys. 129, 164901 (2008)]. We calculate the diffusion coefficients, reorientational dynamics, and the atomic density profile of water molecules as a function of the number of water molecules per amphiphilic (n(w)). We also analyze the reorientational motion of the amphiphilics and determine a strong correlation between the dynamics of water molecules and the translational and reorientational dynamics of the amphiphilics, as well as a correlation between the reorientational dynamics of the amphiphilics belonging to the upper and lower halves of the studied thin films.
通过在几种不同含水量的薄膜中进行一系列分子动力学计算,计算了牛顿黑膜中两亲分子的动力学特性以及被两个带电亲水面所限制的水的动力学特性。在我们的模拟中使用了带电半柔性两亲模型和 TIP5P 水模型[Z. Gamba, J. Chem. Phys. 129, 164901 (2008)]。我们计算了扩散系数、重取向动力学以及水分子的原子密度分布作为每单位两亲物(n(w))的水分子数的函数。我们还分析了两亲分子的重取向运动,并确定了水分子的动力学与两亲分子的平移和重取向动力学之间存在很强的相关性,以及属于研究的薄膜上下两半部分的两亲分子的重取向动力学之间存在相关性。