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Aligned Ionogel Electrolytes for High‐Temperature Supercapacitors

机译:高温超级电容器用对齐的离子凝胶电解质

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摘要

Ionogels are a new class of promising materials for use in all‐solid‐state energy storage devices in which they can function as an integrated separator and electrolyte. However, their performance is limited by the presence of a crosslinking polymer, which is needed to improve the mechanical properties, but compromises their ionic conductivity. Here, directional freezing is used followed by a solvent replacement method to prepare aligned nanocomposite ionogels which exhibit enhanced ionic conductivity, good mechanical strength, and thermal stability simultaneously. The aligned ionogel based supercapacitor achieves a 29% higher specific capacitance (176 F g−1 at 25 °C and 1 A g−1) than an equivalent nonaligned form. Notably, this thermally stable aligned ionogel has a high ionic conductivity of 22.1 mS cm−1 and achieves a high specific capacitance of 167 F g−1 at 10 A g−1 and 200 °C. Furthermore, the diffusion simulations conducted on 3D reconstructed tomography images are employed to explain the improved conductivity in the relevant direction of the aligned structure compared to the nonaligned. This work demonstrates the synthesis, analysis, and use of aligned ionogels as supercapacitor separators and electrolytes, representing a promising direction for the development of wearable electronics coupled with image based process and simulations.
机译:离子凝胶是一类新的有前途的材料,可用于全固态储能设备中,在其中它们可用作集成的隔膜和电解质。然而,它们的性能受到交联聚合物的存在的限制,这是改善机械性能所必需的,但会损害其离子传导性。在此,使用定向冷冻,随后使用溶剂替代方法来制备取向的纳米复合离子凝胶,其同时显示出增强的离子导电性,良好的机械强度和热稳定性。对齐的基于离子凝胶的超级电容器比不对齐的形式具有29%的比电容(在25°C时为176 F g -1 和1 A g -1 )。值得注意的是,这种热稳定取向的离子凝胶具有22.1 mS cm -1 的高离子电导率,在10 A g -1 的高比电容> −1 和200°C。此外,在3D重建断层图像上进行的扩散模拟用于解释与未排列的结构相比,在排列结构的相关方向上的导电性得到了改善。这项工作演示了对齐的离子凝胶的合成,分析和作为超级电容器隔板和电解质的用途,代表了可穿戴电子设备与基于图像的过程和模拟相结合的发展的有希望的方向。

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