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High-Performance Structural Supercapacitors Based on Aligned Discontinuous Carbon Fiber Electrodes and Solid Polymer Electrolytes

机译:基于对齐的不连续碳纤维电极和固体聚合物电解质的高性能结构超级电容器

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摘要

This paper presents an investigation of the potential to use aligned discontinuous carbon fiber dry prepregs as electrodes in structural supercapacitors (SSCs). The high fiber-matrix interfacial bonding of the structural composite was achieved by adopting a solid polymer electrolyte, consisting of poly(vinylidene), lithium triflate, and epoxy. Processing of the SSC was carried out via dip-coating of the polymer electrolyte and then cured using a vacuum bag. The electrochemical performance of the SSCs was measured before and after mechanical loading. The microstructures of the SSCs as-fabricated and damaged under flexural loading were identified by μ-CT imaging. An SSC with a specific capacitance of 0.128 mF/cm~(2) (11.62 mF/g), a flexural strength of 47.49 MPa, and a flexural modulus of 8.48 GPa has been achieved, demonstrating significant improvements in mechanical properties over those of SSCs based on woven carbon fiber fabric-based electrodes. The mechanical behavior of the supercapacitors was evaluated by both quasi-static and cyclic flexural loading tests. The excellent electrochemical stability of the supercapacitors was validated by a capacitance retention of above 96% under galvanostatic charge–discharge cycling tests. The knowledge gained in this work will benefit future research in the optimization of SSC performance.
机译:本文研究了在结构超级电容器(SSC)中使用定向不连续碳纤维干预浸料作为电极的可能性。结构复合材料的高纤维-基体界面结合是通过采用由聚偏二乙烯、三氟化锂和环氧树脂组成的固体聚合物电解质实现的。SSC的处理通过聚合物电解质的浸渍涂层进行,然后使用真空袋进行固化。在机械加载前后测量了SSC的电化学性能。通过μ-CT成像确定了在弯曲载荷下制造和损坏的SSC的微观结构。获得了比电容为0.128 mF/cm2(11.62 mF/g)、弯曲强度为47.49 MPa、弯曲模量为8.48 GPa的SSC,与基于编织碳纤维织物电极的SSC相比,其力学性能有显著改善。超级电容器的机械性能通过准静态和循环弯曲载荷试验进行评估。通过恒电流充放电循环试验,超级电容器的电容保持率在96%以上,验证了超级电容器优异的电化学稳定性。在这项工作中获得的知识将有助于未来SSC性能优化的研究。

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