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Surface modification of stainless steel bipolar plates for PEMFC (proton exchange membrane fuel cell) application

机译:PEMFC(质子交换膜燃料电池)应用的不锈钢双极板的表面改性

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Stainless steel 316 and 304 plates were deposited with a metallic film (top layer) and a conductive oxide film (intermediate layer) by a sputtering method and an E-beam method, respectively. The conductive oxide film was formed on the stainless steel plates in the range of thickness of 200, 400, and 600 nm. The XRD patterns of the conductive oxide films showed a typical indium-tin oxide (ITO) crystalline phase. The metallic films of 100 nm thickness were subsequently formed on the surface region of the bare stainless steel plates and the stainless steel plates deposited with ITO thin film. Surface morphologies of the stainless steel bipolar plates deposited with conductive film and metallic film were observed by AFM and FE-SEM. The metallic films on the stainless steel plates represented the microstructural morphology of the fine columnar grains of 10 nm diameter and 60 nm length. The electrical resistivity and contact angle of the stainless steel bipolar plates modified were examined as a function of the thickness of the conductive oxide film.
机译:通过溅射法和电子束法分别在不锈钢316和304板上沉积金属膜(顶层)和导电氧化物膜(中间层)。在不锈钢板上形成厚度为200、400和600nm的导电氧化物膜。导电氧化物膜的XRD图案显示出典型的铟锡氧化物(ITO)晶相。随后在裸露的不锈钢板和沉积有ITO薄膜的不锈钢板的表面区域上形成100 nm厚的金属膜。用AFM和FE-SEM观察了沉积有导电膜和金属膜的不锈钢双极板的表面形貌。不锈钢板上的金属膜代表直径为10 nm,长度为60 nm的细圆柱状晶粒的微观组织形态。考察了改性的不锈钢双极板的电阻率和接触角与导电氧化膜厚度的关系。

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