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Electrode Preparation and Electro-deformation of Ionic Polymer-metal Composite (IPMC)

机译:离子聚合物 - 金属复合材料(IPMC)的电极制备和电变形

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Ionic polymer-metal composites (IPMC) are a new class of active materials. A new Nafion-based IPMC was prepared by penetration-reduction process and chemical plating process and characterized with its morphology; the sectional element distribution and silver growth mode were examined by scanning electron microscopy (SEM) and energy dispersive X-ray spectrometer (EDS), respectively. For Ag-Nafion based IPMC, SEM images revealed that Ag particles is deposited uniformly on the surface of Nafion membrane, the analysis of EDS showed that Ag particles penetrated inside Nafion membrane with gradient distribution throughout the membrane and grew as dendritic structure. IPMC with two times chemical deposition produces a larger electro-deformation when applying 1.25V voltage across the membrane and the maximum electro-deformation angle could reach to 46°. For Ni-Ag/Nafion based IPMC, SEM images revealed that Ni particles distribution is uniform and compact on the surface of Nafion membrane, while Ni particles were plated on the outwards to form a thicker nickel layer. The IPMC surface resistance with the nickel layer outside is abruptly decreased, while the stiffness and Young modulus of the IPMC increased, it could meet with the stress requirement at the same displacement in its application.
机译:离子聚合物 - 金属复合材料(IPMC)是一类新的活性材料。通过渗透还原过程和化学电镀过程制备了一种新的基于Nafion的IPMC,并表征其形态;通过扫描电子显微镜(SEM)和能量分散X射线光谱仪(EDS)来检查截面元素分布和银生长模式。对于基于银的Nafion IPMC,SEM图像显示,Ag粒子均匀地沉积Nafion膜的表面上,EDS分析表明,穿透Nafion膜内部Ag粒子在整个膜梯度分布和成长为树枝状结构。具有两倍化学沉积的IPMC在施加膜上施加1.25V电压时产生较大的电变形,并且最大电变形角可以达到46°。对于Ni基的Ag /的Nafion IPMC,SEM图像显示,Ni颗粒分布是均匀的和紧凑的Nafion膜的表面上,而Ni颗粒镀在所述向外形成更厚的镍层。与镍层外侧的IPMC表面电阻急剧下降,而IPMC的刚度和杨氏模量增加,也可以用在其应用程序相同的位移的应力满足要求。

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