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首页> 外文期刊>The journal of physical chemistry, B. Condensed matter, materials, surfaces, interfaces & biophysical >Molecular Dynamic Simulation of Dicationic Ionic Liquids: Effects of Anions and Alkyl Chain Length on Liquid Structure and Diffusion
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Molecular Dynamic Simulation of Dicationic Ionic Liquids: Effects of Anions and Alkyl Chain Length on Liquid Structure and Diffusion

机译:阳离子阳离子液体的分子动力学模拟:阴离子和烷基链长对液体结构和扩散的影响

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Structures and dynamics of nine geminal dicationic ionic liquids (DILs) Cn(rnim)2X2, where n = 3, 6, and 9 and X = PF6~-, BF4~-, and Br~-, were studied by molecular dynamic simulations (J. Phys. Chem. B 2004, 108, 2038-2047). A force field with a minor modification for C3(mim)2 X 2 was adopted for the simulations. Densities, detailed microscopic structures, mean-square displacements (MSD), and self-diffusivities for various ion pairs from MD simulations have been presented. The calculated densities for C9(mim)2X2 (X = Br~- and BF4~-) agreed well with the experimental values. The calculated RDFs show that anions are well organized around the imidazolium rings. The calculated RDFs indicate that, unlike the mono cationic ILs, the anions and cations in DILs distribute homogeneously. Enthalpies of vaporization were calculated and correlated with the structural features of DILs. The local structure of C9(mim)2X2 (X = Br, PF6) was examined by the spatial distribution function (SDF). The calculated SDFs show that similar trends were found by other groups for mono cationic ionic liquids (ILs). The highest probability densities are located around the imidazolium ring hydrogens. The calculated diffusion coefficients show that the ion diffusivities. are 1 order of magnitude smaller than that of the mono cationic ionic liquids. The effects of alkyl chain length and anion type on the diffusion coefficient were also studied. The dynamics of the imidazolium rings and the alkyl chain in different time scales have also discussed. The calculated transference numbers show that the anions have the major role in carrying the electric current in a DIL.
机译:通过分子动力学模拟研究了九种双功能离子液体Cn(rnim)2X2的结构和动力学,其中n = 3、6和9且X = PF6〜-,BF4〜-和Br〜-( J. Phys。Chem。B 2004,108,2038-2047)。模拟中采用了对C3(mim)2 X 2进行了微小修改的力场。密度,详细的微观结构,均方位移(MSD)和自扩散的MD模拟提供了各种离子对。 C9(mim)2X2(X = Br〜-和BF4〜-)的计算密度与实验值吻合良好。计算得出的RDF值表明,咪唑鎓环周围的阴离子井井有条。计算得出的RDF表明,与单阳离子IL不同,DIL中的阴离子和阳离子分布均匀。计算汽化焓并与DIL的结构特征相关。通过空间分布函数(SDF)检查了C9(mim)2X2(X = Br,PF6)的局部结构。计算得出的SDF表明,其他团体对单阳离子离子液体(IL)也发现了类似的趋势。最高的概率密度位于咪唑环氢附近。计算出的扩散系数表明离子的扩散率。比单阳离子离子液体小1个数量级。还研究了烷基链长和阴离子类型对扩散系数的影响。还讨论了咪唑环和烷基链在不同时间尺度上的动力学。计算得出的迁移数表明,阴离子在DIL中承载电流方面起主要作用。

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