首页> 外文会议>Polymer Electrolyte Fuel Cells Symposium;Meeting of The Electrochemical Society >A Study on Structural Property of Ionomer as a Model for Catalyst Layer: Relationship between Thickness and Proton Conduction for Ionomer Thin Film on Different Substrate
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A Study on Structural Property of Ionomer as a Model for Catalyst Layer: Relationship between Thickness and Proton Conduction for Ionomer Thin Film on Different Substrate

机译:作为催化剂层模型的离聚物的结构性质研究:不同基材上离聚物薄膜的厚度与质子传导之间的关系

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To study the property of proton conduction for electrolyte thin film inside catalyst layer, model ionomer thin films were prepared on different surfaces such as carbon and platinum substrates. An atomic force microscopy coupled with electrochemical technique (e-AFM) demonstrated that proton conduction reduced with film thickness, and abruptly decreased when film thickness was less than 10 nm for both carbon and platinum substrate. This indicates that number of active proton conductive pathway and/or connectivity of proton path network change with film thickness, and is though that the morphology of thin film is essentially different from that of a bulk membrane.
机译:为了研究质子在催化剂层内部的电解质薄膜的质子传导性能,在不同表面(例如碳​​和铂衬底)上制备了模型离聚物薄膜。原子力显微镜结合电化学技术(e-AFM)证明,碳和铂基体的质子传导均随膜厚的降低而降低,而当膜厚小于10 nm时,质子传导会突然降低。这表明活性质子传导路径的数量和/或质子路径网络的连通性随膜厚度而变化,尽管薄膜的形态与本体膜的形态本质上不同。

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