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离子液体[BMIM][Tf2N]在高压下的自扩散、速度交叉相关性、独特扩散和阻力系数。

Self-diffusion, velocity cross-correlation, distinct diffusion and resistance coefficients of the ionic liquid [BMIM][Tf2N] at high pressure.

作者信息

Harris Kenneth R, Kanakubo Mitsuhiro

机构信息

School of Physical, Environmental and Mathematical Sciences, University College, University of New South Wales, P. O. Box 7916, Canberra BC, ACT 2610, Australia.

出版信息

Phys Chem Chem Phys. 2015 Oct 7;17(37):23977-93. doi: 10.1039/c5cp04277a. Epub 2015 Aug 27.

Abstract

Ion self-diffusion coefficients (DSi) have been measured for the ionic liquid 1-butyl-3-methylimidazolium bis(trifluoromethanesulfonyl)amide [BMIM][Tf2N] at pressures to 200 MPa between 25 and 75 °C and at 0.1 MPa between 10 and 90 °C. Self-diffusion coefficients are reported for 1-ethyl-, 1-hexyl- and 1-octyl-3-methylimidazolium bis(trifluoromethanesulfonyl)amide salts at 0.1 MPa, supplemented by viscosity, electrical conductivity and density measurements. Velocity cross-correlation (VCC, fij) and distinct diffusion coefficients (D) are calculated from the data. Both DSi and D are analysed in terms of (fractional) Stokes-Einstein-Sutherland (SES) equations. SES and Walden plots show almost identical slopes, with high-pressure isotherms and the atmospheric pressure isobar falling on common, single lines for each property for [BMIM][Tf2N]. SES plots for the anion self-diffusion coefficients for the [RMIM][Tf2N] (R = alkyl) series are coincident, whereas those for the cations depend on their alkyl substitution, as do the Walden plots. In common with other Tf2N salts, the VCC follow the order f-- < f++ < f+-. The Nernst-Einstein deviation parameter Δ for [BMIM][Tf2N] is independent of temperature and pressure. Those for the other Tf2N salts are independent of temperature. Δ increases in magnitude with increasing alkyl chain length on the cation. The transport properties of [BMIM][Tf2N] are re-examined in terms of density scaling using reduced conductivities and reduced molar conductivities for the first time. Identical scaling parameters (γ) are obtained for the several reduced transport properties. This result is supported by data for other ionic liquids. It is suggested that the γ for ionic liquids may depend on packing fraction.

摘要

已在25至75°C、压力达200 MPa以及10至90°C、0.1 MPa条件下测量了离子液体1-丁基-3-甲基咪唑双(三氟甲磺酰)亚胺盐([BMIM][Tf2N])的离子自扩散系数(DSi)。还报道了1-乙基-、1-己基-和1-辛基-3-甲基咪唑双(三氟甲磺酰)亚胺盐在0.1 MPa下的自扩散系数,并辅以粘度、电导率和密度测量。根据这些数据计算了速度交叉关联(VCC,fij)和不同扩散系数(D)。DSi和D均根据(分数)斯托克斯 - 爱因斯坦 - 萨瑟兰(SES)方程进行分析。SES图和瓦尔登图显示出几乎相同的斜率,对于[BMIM][Tf2N]的每种性质,高压等温线和大气压等压线都落在共同的单线上。[RMIM][Tf2N](R = 烷基)系列阴离子自扩散系数的SES图是重合的,而阳离子的SES图则取决于其烷基取代情况,瓦尔登图也是如此。与其他Tf2N盐一样,VCC遵循f-- < f++ < f+-的顺序。[BMIM][Tf2N]的能斯特 - 爱因斯坦偏差参数Δ与温度和压力无关。其他Tf2N盐的Δ与温度无关。Δ的大小随阳离子上烷基链长度的增加而增加。首次使用折合电导率和折合摩尔电导率,根据密度标度重新审视了[BMIM][Tf2N]的传输性质。对于几种折合传输性质获得了相同的标度参数(γ)。其他离子液体的数据也支持这一结果。有人认为离子液体的γ可能取决于堆积分数。

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