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阳离子和阴离子在基于二价阳离子的咪唑类塑料晶体离子导体中的传输。

Cation and anion transport in a dicationic imidazolium-based plastic crystal ion conductor.

机构信息

Department of Chemistry and Macromolecules and Interfaces Institute, Virginia Tech , Blacksburg, Virginia 24061, United States.

出版信息

J Phys Chem B. 2014 Feb 27;118(8):2176-85. doi: 10.1021/jp4084629. Epub 2014 Feb 18.

Abstract

Here we investigate the organic ionic plastic crystal 1,2-bis[N-(N'-hexylimidazolium-d2(4,5))]ethane 2PF6(-) in one of its solid plastic crystal phases by means of multinuclear solid-state (SS) NMR and pulsed-field-gradient NMR diffusometry. We quantify distinct cation and anion diffusion coefficients as well as the Arrhenius diffusion activation energies (Ea) in this dicationic imidazolium-based plastic crystal. Our studies suggest a change in transport mechanism for the cation upon varying thermal and magnetic treatment (9.4 T), evidenced by differences in cation and anion Ea. Moreover, variable temperature (2)H SSNMR line shapes support a change in local molecular environment upon slow cooling in B0. We quantify the percentage of mobile anions as a function of temperature with (19)F SSNMR, wherein two distinct spectral features are present. We also comment on the Arrhenius pre-exponential factor for diffusion (D0), giving insight into the number of degrees of freedom for transport for both cation and anion as a function of thermal treatment. Given the breadth and depth of our measurements, we propose that bulk ion transport is dominated by anion diffusion in ionic-liquid-like domain boundaries separating crystallites. This study elucidates fundamental properties of this plastic crystal, and allows for a more general and deeper understanding of ion transport within such materials.

摘要

在这里,我们通过多核固态 NMR 和脉冲梯度 NMR 扩散测量研究了固态塑料晶体相之一的有机离子塑性晶体 1,2-双[N-(N'-己基咪唑二氘(4,5))]乙烷 2PF6(-)。我们定量了该双阳离子咪唑基塑性晶体中不同的阳离子和阴离子扩散系数以及 Arrhenius 扩散活化能 (Ea)。我们的研究表明,在不同的热和磁场处理(9.4 T)下,阳离子的传输机制发生了变化,这可以通过阳离子和阴离子的 Ea 差异来证明。此外,变温 (2)H SSNMR 线宽形状支持在 B0 中缓慢冷却时局部分子环境发生变化。我们通过 (19)F SSNMR 定量了随温度变化的可移动阴离子的百分比,其中存在两个不同的光谱特征。我们还对扩散的 Arrhenius 前置指数因子 (D0) 进行了评论,深入了解了阳离子和阴离子在热处理过程中作为传输自由度数量的信息。鉴于我们测量的广度和深度,我们提出在分离晶体的类似离子液体的晶界中,体相离子传输主要由阴离子扩散主导。这项研究阐明了这种塑性晶体的基本性质,并使我们对这类材料中的离子传输有了更一般和更深入的理解。

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