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研究了由 N-甲基-N-丙基吡咯烷(P13)阳离子和双(三氟甲烷磺酰基)酰胺和双(氟磺酰基)酰胺阴离子以及它们包括锂盐的二元体系组成的离子液体的平移和旋转运动。

Studies on the translational and rotational motions of ionic liquids composed of N-methyl-N-propyl-pyrrolidinium (P13) cation and bis(trifluoromethanesulfonyl)amide and bis(fluorosulfonyl)amide anions and their binary systems including lithium salts.

机构信息

National Institute of Advanced Industrial Science and Technology, AIST Tsukuba Center 5, Tsukuba 305-8565, Japan.

出版信息

J Chem Phys. 2010 Nov 21;133(19):194505. doi: 10.1063/1.3505307.

Abstract

Room-temperature ionic liquids (RTIL, IL) are stable liquids composed of anions and cations. N-methyl-N-propyl-pyrrolidinium (P(13), Py(13), PYR(13), or mppy) is an important cation and produces stable ILs with various anions. In this study two amide-type anions, bis(trifluoromethanesulfonyl)amide [N(SO(2)CF(3))(2), TFSA, TFSI, NTf(2), or Tf(2)N] and bis(fluorosulfonyl)amide [N(SO(2)F)(2), FSA, or FSI], were investigated. In addition to P(13)-TFSA and P(13)-FSA, lithium salt doped samples were prepared (P(13)-TFSA-Li and P(13)-FSA-Li). The individual ion diffusion coefficients (D) and spin-lattice relaxation times (T(1)) were measured by (1)H, (19)F, and (7)Li NMR. At the same time, the ionic conductivity (σ), viscosity (η), and density (ρ) were measured over a wide temperature range. The van der Waals volumes of P(13), TFSA, FSA, Li(TFSA)(2), and Li(FSA)(3) were estimated by molecular orbital calculations. The experimental values obtained in this study were analyzed by the classical Stokes-Einstein, Nernst-Einstein (NE), and Stokes-Einstein-Debye equations and Walden plots were also made for the neat and binary ILs to clarify physical and mobile properties of individual ions. From the temperature-dependent velocity correlation coefficients for neat P(13)-TFSA and P(13)-FSA, the NE parameter 1-ξ was evaluated. The ionicity (electrochemical molar conductivity divided by the NE conductivity from NMR) and the 1-ξ had exactly the same values. The rotational and translational motions of P(13) and jump of a lithium ion are also discussed.

摘要

室温离子液体(RTIL,IL)是由阴离子和阳离子组成的稳定液体。N-甲基-N-丙基-吡咯烷鎓(P(13)、Py(13)、PYR(13)或 mppy)是一种重要的阳离子,可与各种阴离子生成稳定的 IL。在这项研究中,两种酰胺型阴离子,双(三氟甲烷磺酰基)酰胺[N(SO(2)CF(3))(2),TFSA、TFSI、NTf(2)或 Tf(2)N]和双(氟磺酰基)酰胺[N(SO(2)F)(2),FSA 或 FSI]被研究。除了 P(13)-TFSA 和 P(13)-FSA,还制备了锂盐掺杂样品(P(13)-TFSA-Li 和 P(13)-FSA-Li)。通过 (1)H、(19)F 和 (7)Li NMR 测量了单个离子扩散系数(D)和自旋晶格弛豫时间(T(1))。同时,在很宽的温度范围内测量了离子电导率(σ)、粘度(η)和密度(ρ)。通过分子轨道计算估算了 P(13)、TFSA、FSA、Li(TFSA)(2)和 Li(FSA)(3)的范德华体积。通过经典的 Stokes-Einstein、Nernst-Einstein (NE) 和 Stokes-Einstein-Debye 方程分析了本研究中获得的实验值,并为纯和二元 IL 绘制了 Walden 图,以澄清单个离子的物理和迁移性质。从纯 P(13)-TFSA 和 P(13)-FSA 的速度相关系数随温度的变化,可以评估 NE 参数 1-ξ。离子性(电化学摩尔电导率除以 NMR 得到的 NE 电导率)和 1-ξ 具有完全相同的值。还讨论了 P(13)的旋转和平移运动以及锂离子的跳跃。

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