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A new graphene-modified protic ionic liquid-based composite membrane for solid polymer electrolytes

机译:一种新型的石墨烯改性的质子离子液体基固体聚合物电解质复合膜

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摘要

The production of a solid polymer electrolyte with high ionic conductivity and mechanical properties is the main fabrication challenge in application of polymer electrolyte membranes. This paper describes a novel polymer electrolyte membrane using protic ionic liquids (PILs) with ionic liquid polymer modified graphene (G) sheets [denoted PIL(NTFSI)-G] that exhibit dramatic enhancements in ionic conductivity (257.4%) and mechanical properties (345% improvement in tensile strength and a near 25-fold increase in modulus were achieved at 150 °C) with a minimal loading of PIL(NTFSI)-G (0.5 wt %). The addition of graphene, by sparing the high-cost PIL addition, gives a 20% cost-saving. The homogeneous distribution of graphene sheets as a 3D network through the polymer matrix in the composite membrane provides a high degree of continuous and interconnected transfer channels to facilitate ion transfer and enhance nanofiller-matrix adhesion to reinforce mechanical properties. This newly developed material provides a potential route toward the design and fabrication of polymer electrolytes.
机译:具有高离子电导率和机械性能的固体聚合物电解质的生产是聚合物电解质膜应用中的主要制造挑战。本文介绍了一种新型的聚合物电解质膜,该膜使用质子离子液体(PIL)和离子液体聚合物改性的石墨烯(G)片材[表示为PIL(NTFSI)-G],在离子传导率(257.4%)和机械性能(345)方面均有显着提高在150℃时,PIL(NTFSI)-G(0.5 wt%)的负载量最小,拉伸强度提高了%,模量提高了近25倍。通过省去昂贵的PIL添加,石墨烯的添加可节省20%的成本。石墨烯片材作为3D网络通过聚合物膜在复合膜中的均匀分布提供了高度连续且相互连接的传输通道,以促进离子传输并增强纳米填料与矩阵的粘合力,从而增强机械性能。这种新开发的材料为聚合物电解质的设计和制造提供了一条潜在的途径。

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