Chang Tsun-Mei, Dang Liem X
Department of Chemistry, University of Wisconsin , Parkside, Wisconsin 53141, United States.
J Phys Chem A. 2014 Sep 4;118(35):7186-93. doi: 10.1021/jp405910k. Epub 2013 Oct 7.
In this paper, we present the results from molecular dynamics simulations of the equilibrium properties of liquid/liquid interfaces of room temperature ionic liquid 1-butyl-3-methylimidazolium hexafluorophosphate ([bmim][PF6]) and simple alcohols (i.e., methanol, 1-butanol, and 1-hexanol) at room temperature. Polarizable potential models are employed to describe the interactions among species. Results from our simulations show stable interfaces between the ionic liquid and n-alcohols, and we found that the interfacial widths decrease from methanol to 1-butanol systems and then increase for 1-hexanol interfaces. Angular distribution analysis reveals that the interface induces a strong orientational order of [bmim] and n-alcohol molecules near the interface, with [bmim] extending its butyl group into the alcohol phase, whereas the alcohol has the OH group pointing into the ionic liquid region, which is consistent with the recent sum-frequency-generation experiments. We found the interface to have a significant influence on the dynamics of ionic liquids and n-alcohols. The orientational autocorrelation functions illustrate that [bmim] rotates more freely near the interface than in the bulk, whereas the rotation of n-alcohol is hindered at the interface. Additionally, the time scale associated with the diffusion along the interfacial direction is found to be faster for [bmim] but slowed down for n-alcohols approaching the interface. We also calculate the dipole moment of n-alcohols as a function of the distance normal to the interface. We found that, even though methanol and 1-butanol have different dipole moments in bulk phase, they reach a similar value at the interface.
在本文中,我们展示了室温离子液体1-丁基-3-甲基咪唑六氟磷酸盐([bmim][PF6])与简单醇类(即甲醇、1-丁醇和1-己醇)在室温下液/液界面平衡性质的分子动力学模拟结果。采用可极化势模型来描述各物种之间的相互作用。我们的模拟结果显示了离子液体与正构醇之间稳定的界面,并且我们发现界面宽度从甲醇体系到1-丁醇体系逐渐减小,而对于1-己醇界面则增大。角分布分析表明,界面在界面附近诱导了[bmim]和正构醇分子强烈的取向有序,[bmim]将其丁基伸向醇相,而醇的羟基指向离子液体区域,这与最近的和频产生实验结果一致。我们发现界面对离子液体和正构醇的动力学有显著影响。取向自相关函数表明,[bmim]在界面附近比在本体中旋转更自由,而正构醇在界面处的旋转受到阻碍。此外,发现与沿界面方向扩散相关的时间尺度对于[bmim]更快,但对于接近界面的正构醇则减慢。我们还计算了正构醇的偶极矩作为垂直于界面距离的函数。我们发现,尽管甲醇和1-丁醇在本体相中具有不同的偶极矩,但它们在界面处达到相似的值。