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The electrical and corrosion properties of carbon nanotube coated 304 stainless steel/polymer composite as PEM fuel cell bipolar plates

机译:碳纳米管涂覆的304不锈钢/聚合物复合材料作为PEM燃料电池双极板的电腐蚀性能

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摘要

In this study, the contact resistance and corrosion resistance of three different types of plates used as PEM fuel cell bipolar plates are investigated, viz. (1) 304 stainless steel without carbon nanotube treatment that was then sandwiched between polymer composites, (2) CNT particles placed on the surface of the 304 stainless steel that was then sandwiched between polymer composites, and (3) direct CNTs coated 304 stainless steel that was then sandwiched between polymer composites. Both treated and untreated 304 stainless steel covered with the polymer composites exhibited good corrosion resistance. The results showed that the highest improvement of the contact resistance was accomplished by the direct deposition of CNTs on the 304 stainless steel insert. The results of the potentiodynamic and potentiostatic measurements also showed that direct CNTs deposition on the 304 stainless steel insert did not degrade the corrosion performance under PEM fuel cell operating conditions.
机译:在这项研究中,研究了用作PEM燃料电池双极板的三种不同类型板的接触电阻和耐腐蚀性,即。 (1)未经碳纳米管处理的304不锈钢,然后将其夹在聚合物复合材料之间;(2)将CNT颗粒置于304不锈钢的表面上,然后将其夹在聚合物复合材料之间;(3)直接涂覆CNT的304不锈钢然后将其夹在聚合物复合材料之间。覆盖有聚合物复合材料的已处理和未处理的304不锈钢均显示出良好的耐腐蚀性。结果表明,通过将CNT直接沉积在304不锈钢嵌件上可以最大程度地提高接触电阻。电位动力学和恒电位测量的结果还表明,直接CNT在304不锈钢插入物上的沉积不会降低PEM燃料电池运行条件下的腐蚀性能。

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