Department of Chemistry, University of Isfahan, Isfahan 81746-73441, Iran.
Phys Chem Chem Phys. 2018 May 23;20(20):14251-14263. doi: 10.1039/c8cp02471e.
The surface properties of three symmetric linear tricationic ionic liquids (LTILs) with the common anion, bis(trifluoromethylsulfonyl)imide ([NTf2]-), were studied using atomistic molecular dynamics simulation and identification of the truly interfacial molecules (ITIM) analysis. A refined version of the CL&P force field with the partial charges based on quantum calculations for isolated ion quartets was used to calculate the number densities, orientation of the cations, charge densities and surface tensions. The densities obtained from the simulation of the interface are on average 3% smaller than the densities of bulk NPT simulations, which is due to applying long-range corrections in the simulations of bulk liquids. New observations were reported for this new class of ILs through density profiles and orientational analysis. The ITIM analysis shows that the surface of the LTILs is more populated with anions rather than cations and it becomes smoother with a decrease in the alkyl chain length of the cations. The microscopic structural analysis of the orientational ordering at the interface shows that although for LTIL-1 and LTIL-2, the surface is more populated with anions and therefore has a negative charge, for LTIL-3 the surface is more populated with linkage alkyl chains and therefore has a small positive charge. This difference in the interfacial structures arises from the difference in the alkyl chain lengths. The results show that the LTILs with shorter alkyl chains (i.e. n = 3 and 6) form an inverse-arc shape structure while LTILs with longer alkyl chains (i.e. n = 10) form a sinuous like structure at the interface. The surface tension values of these ILs were calculated at 298 K using the mechanical definition. The simulations resulted in acceptable values for surface tension compared to the experimental trends.
三种对称线性三阳离子离子液体(LTIL)的表面性质(共同阴离子为双(三氟甲烷磺酰基)亚胺[NTf2]-)使用原子分子动力学模拟和真正界面分子(ITIM)分析进行了研究。使用基于孤立离子四重体量子计算的部分电荷的经过改进的 CL&P 力场来计算密度、阳离子取向、电荷密度和表面张力。通过模拟界面获得的密度平均值比 NPT 模拟的体相密度小 3%,这是由于在体相液体模拟中应用了长程校正。通过密度分布和取向分析,报道了这一新类 IL 的新观察结果。ITIM 分析表明,LTILs 的表面阴离子比阳离子更丰富,随着阳离子烷基链长度的减小,表面变得更加光滑。界面处取向有序的微观结构分析表明,尽管对于 LTIL-1 和 LTIL-2,表面阴离子较多,因此带有负电荷,但对于 LTIL-3,表面烷基链较多,因此带有小的正电荷。这种界面结构的差异源于烷基链长度的差异。结果表明,具有较短烷基链(即 n = 3 和 6)的 LTIL 形成反弧形状结构,而具有较长烷基链(即 n = 10)的 LTIL 在界面处形成曲折状结构。使用机械定义在 298 K 下计算这些 IL 的表面张力值。模拟结果与实验趋势相比,表面张力的结果是可以接受的。