首页> 外文期刊>The journal of physical chemistry, B. Condensed matter, materials, surfaces, interfaces & biophysical >Low-Frequency Spectra of 1-Methyl-3-octylimidazolium Tetrafluoroborate Mixtures with Methanol, Acetonitrile, and Dimethyl Sulfoxide: A Combined Study of Femtosecond Raman-Induced Kerr Effect Spectroscopy and Molecular Dynamics Simulations
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Low-Frequency Spectra of 1-Methyl-3-octylimidazolium Tetrafluoroborate Mixtures with Methanol, Acetonitrile, and Dimethyl Sulfoxide: A Combined Study of Femtosecond Raman-Induced Kerr Effect Spectroscopy and Molecular Dynamics Simulations

机译:用甲醇,乙腈和二甲基二甲基二氟硼酸盐的低频光谱与甲醇,乙腈和二甲基二甲基二甲基二甲基 - 磷酸酮诱导的克尔效应光谱和分子动力学模拟的组合研究

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In this study, we examined the low-frequency spectra of 1-methyl-3-octylimidazolium tetrafluoroborate ([MOIm][BF4]) mixtures with methanol (MeOH), acetonitrile (MeCN), and dimethyl sulfoxide (DMSO), which were obtained by femtosecond Raman-induced Kerr effect spectroscopy (fs-RIKES) and molecular dynamics (MD) simulations. In addition, we estimated the liquid properties of the mixtures, such as density rho, surface tension gamma, viscosity eta, and electrical conductivity sigma. The line shapes of the low-frequency Kerr spectra of the three [MOIm][BF4] mixture systems strongly depend on the mole fraction of the molecular liquid, X-ML. The spectral intensity increases with increasing X-ML of the [MOIm][BF4]/MeCN system but decreases for the [MOIm][BF4]/MeOH and [MOIm][BF4]/DMSO systems. These behaviors of the spectral intensities reasonably agree with the vibrational density-of-states spectra when the polarizability anisotropies of MeOH, MeCN, DMSO, and ion species are considered. The characteristic frequencies (first moments, M-1) of the low-frequency spectra of the three mixture systems are almost insensitive at X-ML = 0-0.6. However, the frequencies vary mildly at X-ML = 0.6-0.9 and dramatically at X-ML = 0.9-1. The X-ML-dependent M-1 in the Kerr spectra are well reproduced by the MD simulations. Plots of M-1 versus bulk parameter, (gamma/rho)(1/2), for the three mixture systems show that the mixtures at X-ML = 0-0.6 behave like aromatic cation-based ionic liquids (ILs), those at X-ML = 0.9-1 are molecular liquids (MLs), and those at X-ML = 0.6-0.9 are transitioning between aromatic cation-based ILs and MLs. MD simulations show that the solvent molecules localized at the interface between the ionic and the alkyl group regions without forming large solvent networks at X-ML = 0-0.6. However, solvent networks or regions develop largely at X-ML = 0.6-0.9 and the constituent ions of the IL disperse in the MLs at X-ML = 0.9-1. The MD simulations corroborate the results obtained by fs-RIKES.
机译:在该研究中,我们检测了用甲醇(MeOH),乙腈(MeCN),乙腈(MeCN)和二甲基亚砜(DMSO)的1-甲基-3-辛基咪唑鎓四氟硼酸盐(ε[BF4])混合物的低频光谱由飞秒拉曼诱导的Kerr效应光谱(FS-RIKES)和分子动力学(MD)模拟。此外,我们估计了混合物的液体性质,例如密度Rho,表面张力γ,粘度Eta和电导率Sigma。三[MOIM] [BF4]混合体系的低频kerr光谱的线形状强烈地取决于分子液体的摩尔分数X-mL。频谱强度随着X-ML的X-ML [MOIM] / MECN系统而增加而增加,但是对于ε[MOIM] [BF4] / MEOH和[MOIM] [BF4] / DMSO系统的减少。当考虑MeOH,MECN,DMSO和离子物种的极化各向异性时,这些谱强度的这些行为与振动密度的态谱相同。三种混合系统的低频光谱的特征频率(第一矩,M-1)几乎在X-ml = 0-0-0.6处超短敏感。然而,频率在X-ml = 0.6-0.9处温和地变化,并且在X-ML = 0.9-1处显着显着。 MD仿真,克尔光谱中的X-ML依赖性M-1很好地再现。对于三种混合物系统的M-1与散装参数(γ/ Rho)(1/2)的图表明,X-mL = 0-0.6的混合物表现出芳族阳离子的离子液体(ILS),那些在X-ML = 0.9-1的是分子液体(MLS),X-mL = 0.6-0.9的那些在芳族阳离子的ILS和ML之间转变。 MD模拟表明,在离子和烷基地区之间的界面处定位的溶剂分子在不形成X-mL = 0-0-0.6的大型溶剂网络之间。然而,溶剂网络或区域主要在X-mL = 0.6-0.9处产生,并且IL的组成离子分散在X-ML = 0.9-1的ML中。 MD仿真证实了FS-Rikes获得的结果。

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