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Molecular dynamics simulation for the test of calibrated OPLS-AA force field for binary liquid mixture of tri-iso-amyl phosphate and n-dodecane

机译:用于校准OPLS-AA力场的二元液体混合物试验的分子动力学模拟和N-十二烷的二元液体混合物

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Tri-isoamyl phosphate (TiAP) has been proposed to be an alternative for tri-butyl phosphate (TBP) in the Plutonium Uranium Extraction (PUREX) process. Recently, we have successfully calibrated and tested all-atom optimized potentials for liquid simulations using Mulliken partial charges for pure TiAP, TBP, and dodecane by performing molecular dynamics (MD) simulation. It is of immense importance to extend this potential for the various molecular properties of TiAP and TiAP/n-dodecane binary mixtures using MD simulation. Earlier, efforts were devoted to find out a suitable force field which can explain both structural and dynamical properties by empirical parameterization. Therefore, the present MD study reports the structural, dynamical, and thermodynamical properties with different mole fractions of TiAP-dodecane mixtures at the entire range of mole fraction of 0-1 employing our calibrated Mulliken embedded optimized potentials for liquid simulation (OPLS) force field. The calculated electric dipole moment of TiAP was seen to be almost unaffected by the TiAP concentration in the dodecane diluent. The calculated liquid densities of the TiAP-dodecane mixture are in good agreement with the experimental data. The mixture densities at different temperatures are also studied which was found to be reduced with temperature as expected. The plot of diffusivities for TiAP and dodecane against mole fraction in the binary mixture intersects at a composition in the range of 25%-30% of TiAP in dodecane, which is very much closer to the TBP/n-dodecane composition used in the PUREX process. The excess volume of mixing was found to be positive for the entire range of mole fraction and the excess enthalpy of mixing was shown to be endothermic for the TBP/n-dodecane mixture as well as TiAP/n-dodecane mixture as reported experimentally. The spatial pair correlation functions are evaluated between TiAP-TiAP and TiAP-dodecane molecules. Further, shear viscosity has been computed by perf
机译:已经提出了三甲酰基磷酸酯(TIAP)是钚铀萃取(PUREX)方法中的三 - 磷酸酯(TBP)的替代方案。最近,我们通过执行分子动力学(MD)模拟,成功校准并测试了使用Mulliken部分收费的液体模拟的全原子仿真潜能。使用MD模拟延伸延伸TIAP和TIAP / N-十二烷二元混合物的各种分子特性的这种潜力具有巨大的重要性。早些时候,致力于找出一个合适的力领域,可以通过经验参数化来解释结构和动态特性。因此,本MD研究报告了具有不同摩尔分数的结构,动态和热力学性能,其在0-1的整个摩尔分数的整个摩尔分数范围内使用我们的校准的Mulliken嵌入式优化电位,用于液体模拟(OPLS)力场。 TIAP的计算电偶极力矩几乎不受十二烷稀释剂中TIAP浓度的影响。 TIAP-十二烷混合物的计算液密度与实验数据很好。还研究了不同温度下的混合物密度,该密度被发现与预期的温度降低。 TIAP和十二烷的扩散性与二元混合物中摩尔分数的曲线图在十二烷的25%-30%TIAP的组合物中相交,这非常接近纯X中使用的TBP / N-十二烷组合物过程。发现过量的混合体积是阳性的摩尔分数的阳性,并且混合的过量焓显示为TBP / N-十二烷混合物以及正如实验申报的TIAP / N-十二烷混合物的吸热。在TIAP-TIAP和TIAP-十二烷分子之间评估空间对相关函数。此外,通过perf计算剪切粘度

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