合金
纳米颗粒
材料科学
分散性
纳米晶材料
钴
化学工程
微乳液
纳米技术
冶金
肺表面活性物质
工程类
高分子化学
作者
Jahangeer Ahmed,Bharat Kumar,Amos Mugweru,Phong Trinh,Kandalam V. Ramanujachary,S. E. Lofland,Ashok K. Ganguli
摘要
Microemulsion-based synthesis of Fe−Co alloy nanoparticles has been reported for the first time. Spherical, uniform, and highly monodisperse nanoparticles of Fe75Co25, Fe67Co33, Fe50Co50, and Fe33Co67 with an average size of 20, 25, 10, and 40 nm, respectively, were synthesized. These nanoparticles crystallize in a body-centered cubic cell. A higher cobalt content led to the formation of biphasic mixtures. Energy-dispersive X-ray spectroscopy studies confirmed the Fe/Co ratios. Nanoparticles of the Fe33Co67 alloy show higher hydrogen and oxygen evolution efficiencies (over 100 times) compared with other Fe−Co alloys of nanocrystalline or bulk form. The Fe−Co alloy nanoparticles also show ferromagnetism.
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