电沉积电流和电解质成分对Fe-Ni合金电沉积的影响

Ghina Imani Rofi, Maria Paristiowati
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引用次数: 2

摘要

研究了溶液变化、电流、厚度、重量、金属成分以及电沉积法制备的Fe-Ni合金的性能。本研究使用的仪器有原子吸收光谱(AAS)测定矿床中的金属成分,x射线衍射测定衍射模式,扫描电子显微镜(SEM)观察形貌和能量色散x射线光谱进行元素分析。SEM显微图显示,Fe-Ni合金的形貌为细化晶粒。随着使用电流的增大,沉积物中铁的含量逐渐降低。原子吸收光谱(AAS)数据还表明,溶液中较高的Ni成分会影响沉积物中每种金属的原子百分比。晶粒尺寸为5 ~ 35 nm的Fe-Ni的面心立方结构反射面在44°、53°和76°处的衍射峰证实了合金的形成。
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The Effect of Electrodeposition Current and Electrolyte Composition on Electrodeposition of Fe-Ni Alloys
This research was conducted to determine the effect of solution variations, electrical current, thickness, weight, metal composition, and the characteristics of the Fe-Ni alloy synthesized using the electrodeposition method. The instruments used in this study were atomic absorption spectroscopy (AAS) to determine the metal composition in the deposit, X-ray diffraction to determine the diffraction patterns, and scanning electron microscopy (SEM) to observe morphology and energy dispersive X-ray spectroscopy for elemental analysis. The SEM micrographs obtained showed that morphology of the Fe-Ni alloy was in the form of refined grains. The percentage of Fe in the deposit decreases with the increase in the used current. The AAS data also showed that a high Ni composition in solution will affect the atomic percent of each metal in the deposit. The formation of the alloy was confirmed by diffraction peaks at 2θ of 44°, 53°, and 76° that associated with reflection planes of the face centered cubic structure of Fe-Ni with the crystallite size range from 5 nm to 35 nm.
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