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首页> 外文期刊>Physical chemistry chemical physics: PCCP >Free volume in ionic liquids: a connection of experimentally accessible observables from PALS and PVT experiments with the molecular structure from XRD data
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Free volume in ionic liquids: a connection of experimentally accessible observables from PALS and PVT experiments with the molecular structure from XRD data

机译:离子液体的自由体积:通过XRD数据的分子结构的PAL和PVT实验,通过PALS和PVT实验进行实验可访问的可观察结果

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In the current work, free volume concepts, primarily applied to glass formers in the literature, were transferred to ionic liquids (ILs). A series of 1-butyl-3-methylimidazolium ([C4MIM]~+) based ILs was investigated by Positron Annihilation Lifetime Spectroscopy (PALS). The phase transition and dynamic properties of the ILs [C4MIM][X] with [X]- = [CI]~-, [BF4]-, [PF6]~-, [OTf]~-, [NTf2]~- and [B(hfip)4]~- were reported recently (Yu et a/., Phys. Chem. Chem. Phys., 2012, 14, 6856-6868). In this subsequent work, attention was paid to the connection of the free volume from PALS (here the mean hole volume, ) with the molecular structure, represented by volumes derived from X-ray diffraction (XRD) data. These were the scaled molecular volume V_(m,scaled), and the van der Waals volume V_(vdw). Linear correlations of at the "knee" temperature ((T_k) with V_(m,scaled) and V_(vdw) gave good results for the [C4MIM]~+ series. Further relationships between volumes from XRD data with the occupied volume V_(occ) determined from PALS/PVT (Pressure Volume Temperature) measurements and from Sanchez-Lacombe Equation of State (SL-EOS) fits were elaborated (V_(occ)(SL-EOS) ≈ 1.63 V_(vdw), R~2 = 0.981 and V_(occ)(SL-EOS) ≈ 1.12 V_m,scaied, R~2 = 0.980). Finally, the usability of V_(m,scaled) was justified in terms of the Cohen-Turnbull (CT) free volume theory. Empirical CT type plots of viscosity and electrical conductivity showed a systematic increase in the critical free volume with molecular size. Such correlations allow descriptions of IL properties with the easily accessible quantity V_(m,scaled) within the context of the free volume.
机译:在目前的工作中,主要将在文献中的玻璃造形剂应用于文献中的自由体积概念转移到离子液体(ILS)中。通过正电子湮没寿命光谱(PAL)研究了一系列基于1-丁基-3-甲基咪唑鎓([C4mim]〜+)的ILS。用[x] - = [ci]〜 - ,[bf4]〜 - ,[otf]〜 - ,[ntf2]〜 - ,[ntf2]〜 - ,[ntf2]〜 - ,[ntf2]〜 - , [B(HFIP)4]〜 - 近期报道(Yu等,Phys。Chem.Chem.Chem。物理学。,2012,14,6856-6868)。在这种随后的工作中,将注意力从PALS(此处的平均孔体积,)与分子结构的连接进行支付,由来自X射线衍射(XRD)数据的体积表示。这些是缩放的分子量V_(m,缩放),以及van der waals体积V_(VDW)。 在“膝关节”温度((t_k)的线性相关性((t_k),具有v_(m,缩放)和v_(vdw)对[c4mim]〜+系列提供了良好的结果。来自XRD数据的卷之间的进一步关系利用由PALS / PVT(压力量温度)测量确定的占用体积V_(OCC)以及从Sanchez-Lacombe方程的状态(SL-EOS)配合(V_(OCC)(SL-EOS)≈1.63V_(VDW) ),R〜2 = 0.981和V_(OCC)(SL-EOS)≈112v_m,scaied,r〜2 = 0.980)。最后,v_(m,scaled)的可用性在Cohen-transbull方面是合理的(CT)自由体积理论。粘度和导电性的经验CT型图显示了具有分子大小的临界自由体积的系统增加。这种相关性允许在上下文中具有易于访问量V_(m,缩放)的IL属性的描述自由量。

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    Freiburger Materialforschungszentrum (FMF) Albert-Ludwigs-Universitat Freiburg Stejan-Meier-Strajie 21 D-79104 Freiburg i. Br. Germany.;

    School of Physics and Optoelectronic Engineering Nanjing University of Information Science and Technology CN-210044 Nanjing China.;

    ITA Institut fur Innovative Technologies Kothen/Halle Wiesenring4 D-06120 Lieskau Germany;

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