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首页> 外文期刊>Physical chemistry chemical physics: PCCP >Optical Kerr effect spectroscopy of CS2 in monocationic and dicationic ionic liquids: insights into the intermolecular interactions in ionic liquids
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Optical Kerr effect spectroscopy of CS2 in monocationic and dicationic ionic liquids: insights into the intermolecular interactions in ionic liquids

机译:单放剂和Daticic离子液中CS2中CS2的光学克尔效应光谱:In离子液体中的分子间相互作用

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A comparative study of the intermolecular dynamics of CS2 in monocationic and dicationic ionic liquids (ILs) was performed using optical heterodyne-detected Raman-induced Kerr effect spectroscopy (OHD-RIKES). The reduced spectral densities (RSDs) of mixtures of CS2 in 1-alkyl-3-methylimidazolium bis[(trifluoromethane)sulfonyl]amide ([C(n)C(1)im][NTf2] for n = 3-5) and 1,2n-bis(3-methylimidazolium-1-yl) alkane bis[(trifluoromethane)sulfonyl]amide ([(C(1)im)(2)C-2n][NTf2](2) for n = 3-5) were investigated as a function of concentration at 295 K. An additivity model was used to obtain the CS2 contribution to the RSD of a mixture in the 0-200 cm(-1) region. One of the aims of this study is to show how CS2 can be used as a probe of intermolecular/interionic interactions in ILs. The concentrations were chosen such that the CS2-to-imidazolium ring mole fraction of a mixture with [(C(1)im)(2)C-2n][NTf2](2) (DIL(2n)) is the same as that of a mixture with [C(n)C(1)im][NTf2] (MIL(n)). As found previously for CS2 in monocationic ILs, the intermolecular spectrum of CS2 in dicationic ILs is lower in frequency and narrower than that of neat CS2. The new result is that the intermolecular spectrum of CS2 is higher in frequency in DIL(2n) than in the corresponding MIL(n), indicating that CS2 molecules experience a stiffer potential in dicationic ILs than in monocationic ILs. The intermolecular dynamics of CS2 being higher in frequency in DIL(2n) than in MIL(n) is consistent with recent molecular dynamics simulations (Lynden-Bell and Quitevis, J. Chem. Phys., 2018, 148, 193844) that show the stiffer potential is the result of greater confinement of CS2 in DIL(2n) than in MIL(n). We also show in this study how effects due to dilution and the intermolecular potential seen by a solute molecule in solution are unraveled.
机译:使用光学外差检测的拉曼诱导的KERR效应谱(OHD-RIKES)进行单子定位和DICTICIC离子液体(ILS)中CS2中CS2分子间动态的对比研究。在1-烷基-3-甲基咪唑鎓双[(三氟甲烷)磺酰基]酰胺([C(n)c(1)Im] [NTF2]的CS2中Cs2混合物的光谱密度(RSD)和N = 3-5的)和1,2n-Bis(3-甲基咪唑鎓-1-基)烷烃双[(三氟甲烷)磺酰基]酰胺([(1)IM)(2)C-2N] [NTF2](2)用于n = 3- 5)作为浓度的函数研究在295k中。添加剂模型用于获得0-200cm(-1)区中混合物的RSD的CS2贡献。本研究的一个目的是展示CS2如何用作ILS中分子间/非分子间相互作用的探针。选择浓度使得与[(1)IM)(2)C-2N] [NTF2](2)(DIL(2N))的混合物的CS2-咪唑米摩尔分数与与[C(n)c(1)Im] [NTF2](MIL(N))的混合物中的混合物。如前所述在单子系列IL中的CS2中发现,DICTICIC ILS中的CS2的分子间光谱频率低于整齐CS2的频率和窄。新结果是Cs2的分子间光谱比在相应MIL(n)中的倍数(2n)较高,表明CS2分子在DICTIONIC IL中经历了比单子系ILS的致密电位。 CS2的分子间动态在DIL(2N)中较高的频率高于MIL(N)与最近的分子动力学模拟一致(Lynden-Bell和J.Chem。物理。,2018,148,193844),其显示更硬的潜力是在DIL(2N)中比在MIL(n)中更大地限制CS2的结果。我们还在这项研究中展示了由于稀释和溶液中溶液中看到的分子间电位的效果是如何解开的。

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