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Preparation and properties of nanofibrous Nafion mats for ionic polymer metal composites

机译:离子聚合物金属复合材料纳米纤维Nafion垫的制备及性能

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摘要

One of the disadvantages of ionic liquids-saturated ionomeric polymer transducers has been known to be their slower speeds of actuation. In this study, a novel membrane structure of nanofibrous mats-based on a copolymer of polytetrafluoroethylene and fluorinated vinyl ether sulfonate (Nafion~(TM)) was proposed. The Nafion~(TM) nanofibrous mats were prepared using the electro-spinning process, and their morphology, ionic conductivity and actuating behavior were compared with the conventional film type of Nafion~(TM) membranes. Although the fibers mats did not show any advantages in terms of ionic conductivity for water-hydrated condition, for the ionic liquids-saturated condition they showed about three folds improvements in ionic conductivity compared with that of conventional film type of membranes having a similar thickness dimension. Also the fabricated fibers mats-based transducers showed higher strain speed of 1.34%/s, which is 52% faster than the films-based actuators.
机译:已知离子液体饱和的离聚物聚合物换能器的缺点之一是其致动速度较慢。在这项研究中,提出了一种新型的纳米纤维垫膜结构,该结构基于聚四氟乙烯和氟化乙烯基醚磺酸盐(NafionTM)的共聚物。使用电纺丝工艺制备了NafionTM纳米纤维垫,并将其形态,离子电导率和驱动行为与传统的NafionTM膜类型进行了比较。尽管在水合条件下纤维毡在离子电导率方面没有任何优势,但在离子液体饱和条件下,与具有类似厚度尺寸的常规膜型膜相比,它们的离子电导率提高了约三倍。 。同样,制造的基于纤维垫的换能器显示出更高的应变速度,为1.34%/ s,这比基于膜的致动器快52%。

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