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Ion Dynamics in a Mixed-Cation Alkoxy-Ammonium Ionic Liquid Electrolyte for Sodium Device Applications

机译:用于钠装置的混合阳离子烷氧基-铵离子液体电解质中的离子动力学

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摘要

The ion dynamics in a novel sodium-containing room-temperature ionic liquid (IL) consisting of an ether-functionalised quaternary ammonium cation and bis(trifluoromethylsulfonyl)amide [NTf2] anion with various concentrations of Na[NTf2] have been characterised using differential scanning calorimetry, impedance spectroscopy, diffusometry and NMR relaxation measurements. The IL studied has been specifically designed to dissolve a relatively large concentration of Na[NTf2] salt (over 2molkg(-1)) as this has been shown to improve ion transport and conductivity. Consistent with other studies, the measured ionic conductivity and diffusion coefficients show that the overall ionic mobility decreases with decreasing temperature and increasing salt content. NMR relaxation measurements provide evidence for correlated dynamics between the ether-functionalised ammonium and Na cations, possibly with the latter species acting as cross-links between multiple ammonium cations. Finally, preliminary cyclic voltammetry experiments show that this IL can undergo stable electrochemical cycling and could therefore be potentially useful as an electrolyte in a Na-based device.
机译:使用差示扫描法对新型的含钠室温离子液体(IL)中的离子动力学进行了表征,该离子液体由醚官能化的季铵阳离子和具有不同浓度的Na [NTf2]的双(三氟甲基磺酰基)酰胺[NTf2]阴离子组成。量热法,阻抗谱,扩散法和NMR弛豫测量。研究的IL已专门设计为溶解相对较大浓度的Na [NTf2]盐(超过2molkg(-1)),因为它已显示可改善离子迁移和电导率。与其他研究一致,测得的离子电导率和扩散系数表明,总离子迁移率随温度降低和盐含量增加而降低。 NMR弛豫测量为醚官能化铵和Na阳离子之间的相关动力学提供了证据,而后者可能充当多个铵阳离子之间的交联键。最后,初步的循环伏安法实验表明该IL可以进行稳定的电化学循环,因此有可能用作Na基器件中的电解质。

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