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水对质子型和非质子型咪唑鎓离子液体传输性质的影响——自扩散系数、电导率及质子交换机制分析

Effect of water on the transport properties of protic and aprotic imidazolium ionic liquids - an analysis of self-diffusivity, conductivity, and proton exchange mechanism.

作者信息

Yaghini N, Nordstierna L, Martinelli A

机构信息

Applied Surface Chemistry, Department of Chemical and Biological Engineering, Chalmers University of Technology, 412 96 Gothenburg, Sweden.

出版信息

Phys Chem Chem Phys. 2014 May 28;16(20):9266-75. doi: 10.1039/c4cp00527a.

Abstract

In this paper we report on the transport properties of protic and aprotic ionic liquids of the imidazolium cation (C2C1Im(+) or C2HIm(+)) and the TFSI(-) or TfO(-) anion as a function of added water. We observe that the self-diffusion coefficient of the ionic species increases upon addition of water, and that the cation diffuses faster than the anion in the entire water concentration range investigated. We also observe that the overall increase of anionic and cationic diffusion coefficients is significant for C2HImTfO while it is rather weak for C2C1ImTFSI, the former being more hydrophilic. Moreover, the difference between cationic and anionic self-diffusivity specifically depends on the structure of the ionic liquid's ions. The degree of ion-ion association has been investigated by comparing the molar conductivity obtained by impedance measurements with the molar conductivity calculated from NMR data using the Nernst-Einstein equation. Our data indicate that the ions are partly dissociated (Λimp/ΛNMR in the range 0.45-0.75) but also that the degree of association decreases in the order C2HImTfO > C2HImTFSI ≈ C2C1ImTfO > C2C1ImTFSI. From these results, it seems that water finds different sites of interaction in the protic and aprotic ionic liquids, with a strong preference for hydrogen bonding to the -NH group (when available) and a stronger affinity to the TfO anion as compared to the TFSI. For the protic ionic liquids, the analysis of (1)H NMR chemical shifts (upon addition of H2O and D2O, respectively) indicates a water-cation interaction of hydrogen bonding nature. In addition, we could probe proton exchange between the -NH group and deuterated water for the protic cation, which occurs at a significantly faster rate if associated with the TfO anion as compared to the TFSI.

摘要

在本文中,我们报告了咪唑阳离子(C2C1Im(+)或C2HIm(+))与TFSI(-)或TfO(-)阴离子组成的质子型和非质子型离子液体的传输性质随添加水的变化情况。我们观察到,添加水后离子物种的自扩散系数增加,并且在所研究的整个水浓度范围内,阳离子的扩散速度比阴离子快。我们还观察到,对于C2HImTfO,阴离子和阳离子扩散系数的总体增加显著,而对于C2C1ImTFSI则相当微弱,前者更具亲水性。此外,阳离子和阴离子自扩散率之间的差异具体取决于离子液体离子的结构。通过将阻抗测量得到的摩尔电导率与使用能斯特 - 爱因斯坦方程从NMR数据计算得到的摩尔电导率进行比较,研究了离子 - 离子缔合程度。我们的数据表明离子部分解离(Λimp/ΛNMR在0.45 - 0.75范围内),但缔合程度按C2HImTfO > C2HImTFSI ≈ C2C1ImTfO > C2C1ImTFSI的顺序降低。从这些结果来看,水在质子型和非质子型离子液体中似乎找到了不同的相互作用位点,与 -NH基团(若存在)形成氢键的倾向很强,并且与TfO阴离子的亲和力比与TFSI的更强。对于质子型离子液体,对(1)H NMR化学位移(分别在添加H2O和D2O后)的分析表明存在氢键性质的水 - 阳离子相互作用。此外,我们可以探测质子型阳离子的 -NH基团与氘代水之间的质子交换,与TFSI相比,当与TfO阴离子缔合时,质子交换速率明显更快。

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