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首页> 外文期刊>Surface Engineering >Electrochemical properties of niobium and niobium compounds modified AISI430 stainless steel as bipolar plates for DFAFC
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Electrochemical properties of niobium and niobium compounds modified AISI430 stainless steel as bipolar plates for DFAFC

机译:铌和铌化合物的电化学性能改性AISI430不锈钢作为DFAFC双极板

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摘要

The highly conductive and corrosion resistant diffusion layers of niobium, niobium nitrides and niobium carbides have been successfully fabricated on AISI430 stainless steel (430 SS) via a plasma surface diffusion alloying (PSDA) method as bipolar plates for direct formic acid fuel cells (DFAFCs). The surface of niobium carbides modified 430 SS (NbC 430 SS) is relative densification and uniformity without other surface flaw and micropore. Potentiodynamic and potentiostatic polarisation measurements indicate that NbC 430 SS enhances the corrosion resistance more effectively than other modified samples and its corrosion current density is maintained approximately 2.5 uA cm~(-2) in the simulated anodic environment of DFAFC. Moreover, NbC 430 SS presents a superior hydrophobicity with a contact angle of 105.5° and a lower interfacial contact resistance (ICR) before and after potentiostatic polarisation tests than other specimens. Therefore, NbC 430 SS developed in this work has a great potential to be bipolar plates for DFAFCs.
机译:通过等离子表面扩散合金化(PSDA)方法,在AISI430不锈钢(430 SS)上成功地制备了铌、氮化铌和碳化铌的高导电耐腐蚀扩散层,作为直接甲酸燃料电池(DFAFC)的双极板。碳化铌改性430不锈钢(NbC 430 SS)表面相对致密、均匀,无其他表面缺陷和微孔。动电位和恒电位极化测试表明,与其他改性样品相比,NbC 430 SS能更有效地提高耐腐蚀性,在DFAFC模拟阳极环境中,其腐蚀电流密度保持在2.5 uA cm-2左右。此外,与其他试样相比,NbC 430 SS在恒电位极化试验前后表现出优越的疏水性,接触角为105.5°,界面接触电阻(ICR)较低。因此,本研究开发的NbC 430 SS有很大潜力成为DFAFC的双极板。

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