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首页> 外文期刊>Journal of power sources >An investigation into polypyrrole-coated 316L stainless steel as a bipolar plate material for PEM fuel cells
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An investigation into polypyrrole-coated 316L stainless steel as a bipolar plate material for PEM fuel cells

机译:聚吡咯涂层的316L不锈钢作为PEM燃料电池的双极板材料的研究

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Increasing attention is being paid to the use of metallic materials as a replacement for non-porous graphite in bipolar plates (BPs) for polymer exchange membrane (PEM) fuel cells. The ideal BP material should demonstrate high values of electrical conductivity, thermal conductivity, corrosion resistance and compressive strength and low values of gas permeability and density. Although metallic materials demonstrate many of those properties, their corrosion resistance can be inadequate, which in turn can lead to unacceptable values of contact resistivity. In this study, polypyrrole was polymerized onto 316L stainless steel using galvanostatic and cyclic voltammometric methods. A dense coating of polypyrrole could be formed on SS316L using both electrochemical methods. The coatings had different morphologies. For galvanostatic coatings, the particle size increases with increasing applied current. For cyclic voltammometric coatings, the particle size increases with increasing the cycle number. The potentiodynamic tests show that the corrosion current density is decreased by about one order of magnitude and polarization resistance is increased by about one order of magnitude by coating with polypyrrole. Optical microscopy showed that there is less intergranular corrosion after coating with polypyrrole. Therefore, these dense polypyrrole coatings much improved the corrosion resistance of SS316L and the coated materials could possibly be used in polymer exchange membrane fuel cells (PEMFCs) as a bipolar plate material.
机译:金属材料在聚合物交换膜(PEM)燃料电池的双极板(BPs)中替代无孔石墨的使用越来越受到关注。理想的BP材料应显示出较高的电导率,导热率,耐蚀性和抗压强度,并应显示出较低的透气率和密度。尽管金属材料表现出许多这些特性,但它们的耐腐蚀性可能不足,这又可能导致接触电阻率值不可接受。在这项研究中,使用恒电流和循环伏安法将聚吡咯聚合到316L不锈钢上。两种电化学方法均可在SS316L上形成致密的聚吡咯涂层。涂层具有不同的形态。对于恒电流涂层,粒径随着施加电流的增加而增加。对于循环伏安涂料,粒径随着循环次数的增加而增加。电位动力学测试表明,通过涂覆聚吡咯,腐蚀电流密度降低了大约一个数量级,极化电阻提高了大约一个数量级。光学显微镜显示,用聚吡咯涂层后,晶界腐蚀较少。因此,这些致密的聚吡咯涂层大大提高了SS316L的耐腐蚀性,并且该涂层材料有可能在聚合物交换膜燃料电池(PEMFC)中用作双极板材料。

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