University of Münster, Institute of Physical Chemistry, Corrensstr. 46, 48149 Münster, Germany.
ChemSusChem. 2013 Jun;6(6):1037-43. doi: 10.1002/cssc.201300105. Epub 2013 May 13.
We report a new class of quaternary polymer electrolyte membranes that comprise poly(ethylene oxide) (PEO), lithium trifluoromethanesulfonylimide (LiTFSI), N-alkyl-N-butylpyrrolidinium bis(trifluoromethanesulfonyl)imide (PyrA,4 TFSI) as an ionic liquid, and a SiO₂ filler. The results of differential scanning calorimetry indicate that the addition of SiO₂ and different ionic liquids induces a decrease in the PEO melting enthalpy, which thereby increases the ionic conductivity and the Li transference number. The electrochemical stability is proved by using impedance spectroscopy and cyclic voltammetry. Galvanostatic cycling of Li/LiFePO₄ cells, which comprise the quaternary polymer electrolytes, revealed their superior performance compared to conventional PEO-Li salt electrolytes. In the course of this investigation, a synergistic effect of the combined ionic liquid-ceramic filler modification could be proved at temperatures close to 50 °C.
我们报告了一类新的季铵聚合物电解质膜,该膜由聚环氧乙烷(PEO)、六氟磷酸锂(LiTFSI)、N-烷基-N-丁基吡咯烷双(三氟甲烷磺酰基)亚胺(PyrA,4 TFSI)作为离子液体和 SiO₂填料组成。差示扫描量热法的结果表明,SiO₂和不同离子液体的添加诱导 PEO 熔融焓降低,从而提高了离子电导率和 Li 迁移数。通过阻抗谱和循环伏安法证明了电化学稳定性。包含季铵聚合物电解质的 Li/LiFePO₄电池的恒电流循环表明,与传统的 PEO-锂盐电解质相比,它们具有优异的性能。在这项研究中,在接近 50°C 的温度下,可以证明组合离子液体-陶瓷填料改性的协同效应。