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Study on the Nanostructure of Nafion Ultra-Thin Film at Pt/C Catalyst Layer in PEMFC: Molecular Dynamics Simulation Approaches

机译:PEMFC中Pt / C催化剂层Nafion超薄膜纳米结构的研究:分子动力学模拟方法

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In this study, the hydrated Nafion film in the CL of the cathode for PEMFC is investigated using molecular dynamics simulation (MD) method, exhibiting different structural characteristics on the Pt and carbon surfaces. First, it is found that water molecules, hydronium ions, and sulfonate groups are highly concentrated at the interfacial region between the Nafion phase and Pt surface, whereas Nafion backbone chains are present in a high concentration at the interface between Nafion phase and carbon surface. Second, it is also found from pair correlation function analysis that the water molecules and sulfonate groups in the hydrated Nafion phase are more associated with the Pt surface compared to the carbon surface, which is due to their strong attractive interactions with the Pt surface that makes the dimension of hydrated Nafion phase 4-7% thinner on the Pt surface. Third, it is observed from water-occupied volume analysis that water molecules on the carbon surface can form a large-size water phase between the Nafion phase and carbon surface because the Nafion-carbon interface is not tightly integrated due to their weak interaction. In these structural characteristics, it is demonstrated that the water diffusion and proton vehicular diffusion are suppressed in the interfacial region of the Pt surface due to the highly packed structures in water phase as well as polymer phase in addition to the strong molecular interaction with the Pt surface, whereas the proton hopping diffusion is enhanced due to the well-developed organized water phase via hydrogen bonding network.
机译:在该研究中,使用分子动力学模拟(MD)方法研究了PEMFC阴极CL中的水合Nafion膜,在PT和碳表面上表现出不同的结构特征。首先,发现水分子,氢镓离子和磺酸盐基团高度浓缩在Nafion期和Pt表面之间的界面区域处,而Nafion骨架链以高浓度存在于Nafion期和碳表面之间的界面处。其次,还发现,与碳表面相比,水分子和磺酸盐在水合氮相中的水分子和磺酸盐基团与Pt表面相比,这是由于它们与碳表面有浓度的含有与Pt表面的相互作用水合Nafion阶段的尺寸4-7%在PT表面上较薄。第三,从占用体积分析中观察到碳表面上的水分子可以在氮相和碳表面之间形成大尺寸的水相,因为Nafion-碳界面由于它们的弱相互作用而没有紧密地集成。在这些结构特征中,证明在PT表面的界面区域中抑制了水扩散和质子车辆扩散,这是由于水相中的高度填充结构以及与PT的强的分子相互作用之外表面,而质子跳跃扩散由于通过氢键网络良好的有组织的水相而增强。

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