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Electrodeposition of Ni-W/CNT Composite Plating and Its Potential as Coating for PEMFC Bipolar Plate

机译:Ni-W / CNT复合电镀电沉积及其作为PEMFC双极板涂层的电位

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In this study, Ni-W/carbon nanotube (CNT) composite platings are electrodeposited onto steel plate as a possible coating material for the polymer electrolyte membrane fuel cell (PEMFC) bipolar plate, which requires high corrosion resistance under acidic environment and low contact resistance. The dispersibility of CNT in the plating bath is improved by surface modification of CNT through hydrothermal treatment in mixed acid solution. The change in electrodeposition behavior of Ni-W plating by CNT addition is investigated by cathodic polarization measurement. The corrosion resistance under acidic environment is evaluated using 0.5M H2SO4 solution and contact resistance of the composite platings is measured and compared with Ni and Ni-W plating. The surface modification of CNT through hydrothermal treatment is found to increase the CNT content in the Ni-W/CNT composite plating up to 0.33 mass.% and sufficient incorporation of hydrothermally treated CNT in Ni-W plating results in low contact resistance and enhanced corrosion resistance than pristine Ni-W plating.
机译:在该研究中,Ni-W /碳纳米管(CNT)复合镀层被电沉积到钢板上,作为用于聚合物电解质膜燃料电池(PEMFC)双极板的可能涂层材料,这在酸性环境下需要高耐腐蚀性和低接触电阻。通过混合酸溶液中的水热处理通过CNT的表面改性,改善了CNT在电镀浴中的分散性。通过阴极偏振测量研究了CNT添加的Ni-W电镀的电沉积行为的变化。使用0.5M H 2 SO 4溶液评估酸性环境下的耐腐蚀性,并测量复合镀层的接触电阻,并与Ni和Ni-W电镀进行比较。发现CNT通过水热处理的表面改性,将Ni-W / CNT复合电镀电镀中的CNT含量增加到0.33质量%。%和充分掺入Ni-W电镀中的水热处理的CNT,导致低接触电阻和增强的腐蚀抗性比原始Ni-W电镀。

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