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Understanding the Ionomer Structure and the Proton Conduction Mechanism in PEFC Catalyst Layer: Adsorbed Nafion on Model Substrate

机译:了解离子交联聚合物结构和质子传导机制PEFC催化剂层:在模型底物吸附电解质

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摘要

To understand the structure/property of the ionomer in the CL, adsorbed Nafion thin films were prepared on model substrate, SiO2 terminated silicon wafer, by spontaneous adsorption of Nafion from its 0.1 to 5 wt% solution. Fitting of Variable Angle Spectroscopic Ellipsometry (VASE) data yielded thickness of adsorbed films ranging from 4 nm at low concentrations (0.1 wt% film) to 306 nm at high concentrations (5wt% film). Contact angle measurements indicated that the low (0.1 wt%) and high (3 wt%) films to posses hydrophobic surface but the intermediate concentration (0.5 wt% and 1.0 wt%) film surface to be hydrophilic. Conductivity measurements of adsorbed films over a range of RH showed that all films prepared from 1 wt% and lower concentrations solutions to possess similar conductivities at high RH. However, the 5wt% film showed much higher conductivity indicating a different proton conduction mechanism for low and high concentration films.
机译:理解的结构/属性在CL离子交联聚合物吸附电解质薄膜准备在模型底物,二氧化硅终止硅片,通过自发吸附全氟磺酸从0.1到5 wt %的解决方案。变量角度光谱椭圆光度法(瓶)数据产生了吸附膜的厚度范围从4海里在低浓度(0.1 wt %的电影)在高浓度306海里(5电影wt %)。接触角的测量表明,低(0.1 wt %)和高(3 wt %)电影拥有但中间疏水表面浓度(0.5 wt % 1.0 wt %)膜表面亲水。吸附在一系列RH显示所有的电影电影从1 wt %和更低的准备浓度的解决方案拥有相似导率在高RH。显示更高的电导率表示低,不同的质子传导机制高浓度的电影。

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