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Li-Nafion Membrane Plasticised with Ethylene Carbonate/Sulfolane: Influence of Mixing Temperature on the Physicochemical Properties

机译:Li-Nafion膜用碳酸亚乙酯/磺胺橡胶:混合温度对物理化学性质的影响

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摘要

The use of dipolar aprotic solvents to swell lithiated Nafion ionomer membranes simultaneously serving as electrolyte and separator is of great interest for lithium battery applications. This work attempts to gain an insight into the physicochemical nature of a Li-Nafion ionomer material whose phase-separated nanostructure has been enhanced with a binary plasticiser comprising non-volatile high-boiling ethylene carbonate (EC) and sulfolane (SL). Gravimetric studies evaluating the influence both of mixing temperature (25 to 80 °C) and plasticiser composition (EC/SL ratio) on the solvent uptake of Li-Nafion revealed a hysteresis between heating and cooling modes. Differential scanning calorimetry (DSC) and wide-angle X-ray diffraction (WAXD) revealed that the saturation of a Nafion membrane with such a plasticiser led to a re-organisation of its amorphous structure, with crystalline regions remaining practically unchanged. Regardless of mixing temperature, the preservation of crystallites upon swelling is critical due to ionomer crosslinking provided by crystalline regions, which ensures membrane integrity even at very high solvent uptake (≈200% at a mixing temperature of 80 °C). The physicochemical properties of a swollen membrane have much in common with those of a chemically crosslinked polymer gel. The conductivity of ≈10−4 S cm−1 demonstrated by Li-Nafion membranes saturated with EC/SL at room temperature is promising for various practical applications.
机译:使用偶极非质子溶剂将溶胀的Nafion离聚物膜同时用作电解质和分离器对锂电池应用具有很大的兴趣。该工作试图深入了解Li-Nafion离聚物材料的物理化学性质,其相分离的纳米结构已通过包含非挥发性高沸点碳酸酯(EC)和磺胺(SL)的二元增塑剂增强。重量研究评估混合温度(25至80℃)和增塑剂组合物(EC / SL比)对Li-Nafion的溶剂摄取的影响,揭示了加热和冷却模式之间的滞后。差分扫描量热法(DSC)和广角X射线衍射(WAXD)显示,具有这种增塑剂的Nafion膜的饱和导致其无定形结构的重新组织,并且晶体区域实际上不变。无论混合温度如何,由于结晶区域提供的离聚物交联剂,微晶在溶胀时的保存是至关重要的,即使在非常高的溶剂摄取(在混合温度为80℃的≈200%)即使在非常高的溶剂吸收中确保膜完整性。溶胀膜的物理化学特性与化学交联聚合物凝胶的含量有很大的共同之处。通过在室温下饱和EC / SL的Li-Nafion膜证明的≈10-4scm-1的电导率是有望的各种实际应用。

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