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Mechanical and thermal behavior of ionic polymer-metal composites: effects of electroded metals

机译:离子聚合物-金属复合材料的机械和热行为:电极金属的影响

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In this study, we investigated the mechanical properties of various types of ionic polymer-metal composites (IPMCs) and Pt, Au, Pd, and Pt electroded ionic liquid (IL-Pt) IPMCs, by testing tensile modulus and dynamic mechanical behavior. The SEM was utilized to investigate the characteristics of the doped electroding layer, and the DSC was probed in order to look into the thermal behavior of various types of IPMCs. Au IPMCs, having a 5-7 mu m-doped layer and nanosized Au particles (ca. 10 nm), showed the highest tensile strength (56 MPa) and modulus (602 MPa) in dried conditions. With regards to thermal behavior, Au IPMC had the highest T-g (153 degrees C) and T-m (263 degrees C) in both the DMA and DSC results. The fracture behavior of various types of IPMCs followed the behavior of the base material, Nafion (TM), which is represented as the semicrystalline polymer characteristic.
机译:在这项研究中,我们通过测试拉伸模量和动态力学行为,研究了各种类型的离子聚合物-金属复合材料(IPMC)和Pt,Au,Pd和Pt离子液体(IL-Pt)IPMC的机械性能。利用SEM研究掺杂的电镀层的特性,并探究DSC,以研究各种类型IPMC的热行为。具有5-7μm掺杂层和纳米级Au颗粒(约10 nm)的Au IPMC在干燥条件下显示出最高的拉伸强度(56 MPa)和模量(602 MPa)。关于热行为,Au IPMC在DMA和DSC结果中均具有最高的T-g(153℃)和T-m(263℃)。各种类型IPMC的断裂行为遵循基材Nafion(TM)的行为,该行为被表示为半结晶聚合物特性。

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