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Corrosion-Resistant Tantalum Coatings for PEM Fuel Cell Bipolar Plates

机译:用于PEM燃料电池双极板的耐腐蚀钽涂层

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Tantalum is a tough, corrosion resistant metal, which would be suitable for use as bipolar plates for proton exchange membrane (PEM) fuel cells, if it was not for its high weight and price. Relatively thin tantalum coatings, however, can be deposited on other inexpensive and lighter weight metals, such as aluminum and steel, providing a passive protection layer on these easily formed substrates. We have successfully deposited, high quality α (body-centered-cubic, bcc) and β (tetragonal) phase tantalum coatings that were a few micrometers thick by dc magnetron sputtering on steel and aluminum. The growth of the thermodynarnically preferred body-centered-cubic (bcc) tantalum phase was induced by a choice of deposition conditions and substrate surface treatment. The microstructure and corrosion resistance of the α-phase in an environment approximately simulating the electrochemical conditions used in a PEM fuel cell were investigated under potentiodynamic conditions. Preliminary potentiostatic measurements of a β-phase sample are also presented.
机译:钽是一种坚韧的耐腐蚀金属,如果它不适用于其高重量和价格,那么适用于质子交换膜(PEM)燃料电池的双极板。然而,相对薄的钽涂层可以沉积在其他廉价且较轻的重量金属(例如铝和钢)上沉积,在这些容易形成的基板上提供无源保护层。我们已经成功地沉积了高质量的α(以中心 - 立方,BCC)和β(四方)相钽涂层,其在钢和铝上的DC磁控溅射厚几微米。通过选择沉积条件和底物表面处理诱导热处理优选的身体中心立方(BCC)钽阶段的生长。在电位状况下研究了大致模拟PEM燃料电池中使用的电化学条件的环境中α相的微观结构和耐腐蚀性。还提出了β相样品的初步电位测量。

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