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Electrodeposition and properties of binary and ternary cobalt alloys with molybdenum and tungsten

机译:钼和钨的二元和三元钴合金的电沉积及其性能

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Electrodeposition of binary and ternary coatings Co-Mo, Co-W and Co-Mo-W from bi-ligand citrate-pyrophosphate electrolyte has been investigated. The effect of both current density amplitude and pulse on/off time on quality, composition and surface morphology of the galvanic alloys was determined. Current density increase up to 10 A dm(-2) has been established to lead to the higher content of refractory metals in all coatings at an acceptable process efficiency. The highest Mo and W content in deposits obtained at current density of 8-10 A dm(-2) with on/off time of 5-20 ms. Improvement in mechanical properties and corrosion resistance of ternary Co-Mo-W deposits when compared with binary and main alloying metals is driven by uniform surface morphology and chemical composition as well as by amorphous structure. The Co-Mo-W deposits with total Mo and W content of 15-20 at.% are the most catalytically active for electrolytic hydrogen evolution out of different media and can be comparable with platinum electrodes in this regard. These properties prospect such alloys as catalytic layer for cathode materials in hydrogen production. A significant increase in the microhardness of ternary alloys with respect to binary alloys is associated with structural features, surface morphology and phase composition. (C) 2018 Elsevier B. V. All rights reserved.
机译:研究了双配位柠檬酸焦磷酸盐电解质对二元和三元涂层Co-Mo,Co-W和Co-Mo-W的电沉积。确定电流密度振幅和脉冲开/关时间对电合金的质量,组成和表面形态的影响。已经确定了电流密度增加到10 A dm(-2),从而以可接受的加工效率导致所有涂层中难熔金属的含量更高。在8-10 A dm(-2)的电流密度和5-20 ms的开/关时间下获得的沉积物中最高的Mo和W含量。与二元和主要合金金属相比,三元Co-Mo-W沉积物的机械性能和耐蚀性的提高是由均匀的表面形态和化学组成以及非晶态结构驱动的。 Mo和W的总含量为15-20 at。%的Co-Mo-W沉积对于从不同介质中放出电解氢具有最高的催化活性,在这方面可以与铂电极媲美。这些性能使这类合金成为氢气生产中阴极材料的催化层。与二元合金相比,三元合金的显微硬度显着增加与结构特征,表面形态和相组成有关。 (C)2018 Elsevier B.V.保留所有权利。

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