Department of Chemistry, Colorado State University, Fort Collins, Colorado 80523-1872, USA.
J Phys Chem A. 2011 Jun 16;115(23):6306-16. doi: 10.1021/jp201866t. Epub 2011 May 6.
In this work, we present results from molecular dynamics simulations on the single-molecule relaxation of water within reverse micelles (RMs) of different sizes formed by the surfactant aerosol-OT (AOT, sodium bis(2-ethylhexyl)sulfosuccinate) in isooctane. Results are presented for RM water content w(0) = [H(2)O]/[AOT] in the range from 2.0 to 7.5. We show that translational diffusion of water within the RM can, to a good approximation, be decoupled from the translation of the RM through the isooctane solvent. Water translational mobility within the RM is restricted by the water pool dimensions, and thus, the water mean-squared displacements (MSDs) level off in time. Comparison with models of diffusion in confined geometries shows that a version of the Gaussian confinement model with a biexponential decay of correlations provides a good fit to the MSDs, while a model of free diffusion within a sphere agrees less well with simulation results. We find that the local diffusivity is considerably reduced in the interfacial region, especially as w(0) decreases. Molecular orientational relaxation is monitored by examining the behavior of OH and dipole vectors. For both vectors, orientational relaxation slows down close to the interface and as w(0) decreases. For the OH vector, reorientation is strongly affected by the presence of charged species at the RM interface and these effects are especially pronounced for water molecules hydrogen-bonded to surfactant sites that serve as hydrogen-bond acceptors. For the dipole vector, orientational relaxation near the interface slows down more than that for the OH vector due mainly to the influence of ion-dipole interactions with the sodium counterions. We investigate water OH and dipole reorientation mechanisms by studying the w(0) and interfacial shell dependence of orientational time correlations for different Legendre polynomial orders.
在这项工作中,我们展示了通过在异辛烷中由表面活性剂气溶胶-OT(AOT,双(2-乙基己基)磺基琥珀酸钠)形成的不同大小的反胶束(RM)中对水的单分子弛豫的分子动力学模拟的结果。结果表示为 RM 中水含量 w(0) = [H 2 O]/[AOT],范围为 2.0 至 7.5。我们表明,RM 内水的平移扩散可以很好地与 RM 通过异辛烷溶剂的平移解耦。RM 内水的迁移率受到水池尺寸的限制,因此水的均方位移(MSD)随时间稳定。与受限几何形状中的扩散模型的比较表明,具有双指数相关函数衰减的高斯约束模型的一个版本可以很好地拟合 MSD,而在球体中自由扩散的模型与模拟结果不太吻合。我们发现局部扩散系数在界面区域大大降低,特别是当 w(0)降低时。通过检查 OH 和偶极向量的行为来监测分子取向弛豫。对于两个向量,取向弛豫在靠近界面和 w(0)降低时都减慢。对于 OH 向量,重新取向受到 RM 界面处带电物质的存在的强烈影响,这些影响对于与充当氢键受体的表面活性剂位点氢键合的水分子特别明显。对于偶极向量,由于与钠离子抗衡离子的离子偶极相互作用的影响,界面附近的取向弛豫比 OH 向量慢。通过研究不同勒让德多项式阶的取向时间相关函数对 w(0)和界面壳的依赖性,我们研究了水 OH 和偶极重新取向的机制。