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基于吡咯烷鎓的离子液体的静态结构因子峰值强度的温度依赖性。

Temperature Dependence of Static Structure Factor Peak Intensities for a Pyrrolidinium-Based Ionic Liquid.

机构信息

Department of Chemistry and Biochemistry , Northern Illinois University , DeKalb , Illinois 60115 , United States.

Department of Physics , St. Norbert College , De Pere , Wisconsin 54115 , United States.

出版信息

J Phys Chem B. 2019 Feb 21;123(7):1672-1678. doi: 10.1021/acs.jpcb.9b00449. Epub 2019 Feb 6.

Abstract

Static structure factors ( S( q)) for many ionic liquids show low-wavenumber peaks whose intensities increase with increasing temperature. The greater peak intensities might seem to imply increasing intermediate-range order with increasing temperature. Molecular dynamics (MD) simulations for a representative ionic liquid, 1-butyl-1-methylpyrrolidinium bis(trifluoromethylsulfonyl)imide (CCpyrrTFSI), were used to calculate S( q) and partial S( q) (cation-cation, anion-anion, and cation-anion) at 298, 363, and 500 K. S( q) and partial S( q) were further decomposed into positive and negative components (which each indicate structural ordering) by separately summing positive and negative Fourier transform summands. Increasing temperature causes the negative components of each partial S( q) to decrease in magnitude more than the positive components, causing the total S( q) to increase in magnitude. Thus, structural ordering with periodicities corresponding to observed peaks in S( q) does not increase but instead decoheres with increasing temperature, even though S( q) peak heights increase. Fourier transform summands also show where in real space the positive and negative component contributions to S( q) change when the temperature increases. This new, detailed analysis based on Fourier transform summands comprising S( q) argues for great caution when interpreting S( q) intensities and highlights the value of simulations as a complement to X-ray (or neutron) scattering experiments.

摘要

许多离子液体的静态结构因子 (S(q)) 显示出低波数峰值,其强度随温度升高而增加。较大的峰值强度似乎意味着随着温度的升高,中间范围的有序性增加。使用分子动力学 (MD) 模拟代表离子液体 1-丁基-1-甲基吡咯烷双(三氟甲烷磺酰基)亚胺 (CCpyrrTFSI),计算了 298、363 和 500 K 时的 S(q) 和部分 S(q)(阳离子-阳离子、阴离子-阴离子和阳离子-阴离子)。通过分别对正和负傅里叶变换求和项进行求和,将 S(q) 和部分 S(q) 进一步分解为正和负分量(每个分量都表示结构有序性)。随着温度的升高,各部分 S(q) 的负分量的幅度减小幅度大于正分量,导致总 S(q) 的幅度增加。因此,与 S(q) 中观察到的峰对应的周期性结构有序性并没有增加,而是随着温度的升高而解相干,尽管 S(q) 的峰值高度增加。傅里叶变换求和项还显示了当温度升高时 S(q) 中正负分量的贡献在实空间中发生变化的位置。这种基于包含 S(q) 的傅里叶变换求和项的新的详细分析,在解释 S(q) 强度时需要非常谨慎,并强调了模拟作为 X 射线(或中子)散射实验的补充的价值。

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