Wasatch Molecular, Incorporated, 825 N. 300 W., Salt Lake City, Utah 84103, USA.
J Chem Phys. 2013 Sep 14;139(10):104503. doi: 10.1063/1.4819903.
Molecular dynamics (MD) simulations of mixtures of the room temperature ionic liquids (ILs) 1-butyl-4-methyl imidazolium [BMIM]/dicyanoamide [DCA] and [BMIM][NO3(-)] with HNO3 have been performed utilizing the polarizable, quantum chemistry based APPLE&P(®) potential. Experimentally it has been observed that [BMIM][DCA] exhibits hypergolic behavior when mixed with HNO3 while [BMIM][NO3(-)] does not. The structural, thermodynamic, and transport properties of the IL/HNO3 mixtures have been determined from equilibrium MD simulations over the entire composition range (pure IL to pure HNO3) based on bulk simulations. Additional (non-equilibrium) simulations of the composition profile for IL/HNO3 interfaces as a function of time have been utilized to estimate the composition dependent mutual diffusion coefficients for the mixtures. The latter have been employed in continuum-level simulations in order to examine the nature (composition and width) of the IL/HNO3 interfaces on the millisecond time scale.
利用基于极化量子化学的 APPLE&P(®) 势能,对室温离子液体 1-丁基-4-甲基咪唑[BMIM]/双氰胺[DCA]和[BMIM][NO3(-)]与 HNO3 的混合物进行了分子动力学(MD)模拟。实验观察到[BMIM][DCA]与 HNO3 混合时表现出自燃行为,而[BMIM][NO3(-)]则没有。基于体相模拟,通过平衡 MD 模拟,从整个组成范围(纯 IL 到纯 HNO3)确定了 IL/HNO3 混合物的结构、热力学和输运性质。还利用非平衡模拟来研究 IL/HNO3 界面随时间的组成分布,以估算混合物的依赖于组成的互扩散系数。这些扩散系数被用于连续统级模拟中,以在毫秒时间尺度上研究 IL/HNO3 界面的性质(组成和宽度)。