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Modifying a Stainless Steel for PEMFC Bipolar Plates via Electrochemical Nitridation

机译:通过电化学氮化改性PEMFC双极板的不锈钢

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AISI446 stainless steel was electrochemically nitrided at room temperature. X-ray photoelectron spectroscopy (XPS) analysis indicated that the nitrided steel was covered with surface ammonia and a layer of nitrides (mainly of mixed chromium nitrides). The nitride layer for 4 h nitrided steel at -0.9 V was about 2.5 nm thick. Dominating oxides appear on the steel's surface, so nitrogen incorporated oxides is a suitable term to describe the nitrided surface. The nitrided surface showed very low interfacial contact resistance (ICR) and excellent corrosion resistance in simulated polymer electrolyte membrane fuel cell (PEMFC) environments. The excellent stability of the nitride steel was confirmed by XPS depth profiling before and after testing in the PEMFC environments. Electrochemical nitridation provides an economic way for modifying the steel's surface to approach the U.S. Department of Energy 2015 goal for bipolar plates.
机译:AISI446不锈钢在室温下进行了化学氮化。 X射线光电子能谱(XPS)分析表明,氮化钢表面被氨和一层氮化物(主要是混合氮化铬)覆盖。 -0.9 V下用于4 h氮化钢的氮化层约为2.5 nm厚。主要的氧化物出现在钢的表面,因此掺氮的氧化物是描述渗氮表面的合适术语。在模拟的聚合物电解质膜燃料电池(PEMFC)环境中,氮化的表面显示出非常低的界面接触电阻(ICR)和出色的耐腐蚀性。在PEMFC环境中进行测试之前和之后,通过XPS深度剖析确认了氮化钢的出色稳定性。电化学氮化为改性钢的表面提供了一种经济的方法,使其可以达到美国能源部2015年制定的双极板目标。

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