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以五羰基铁和四羰基镍为前驱体,使它们在高温下热解并通过自合金化过程制备出抗氧化性能强的粒度为50nm的羰基γ-(Fe,Ni)超细微粒,X射线能量色散谱(EDS)的定量分析表明,其Fe、Ni的原子含量约为Fe40%、Ni60%,透射电镜分析表明粒度为50nmn的颗粒是由粒度只有几个nm的更小的颗粒所组成,并测量了颗粒的磁性能。
With iron pentacarbonyl and nickel tetracarbonyl as precursors, they were pyrolyzed at high temperature and were prepared by auto-alloying to produce carbonyl γ- (Fe, Ni) ultrafine particles of 50nm with high oxidation resistance. X-ray Quantitative analysis of energy dispersive spectroscopy (EDS) showed that the atomic contents of Fe and Ni were about 40% Fe and 60% Ni. Transmission electron microscopy showed that the particles with a size of 50 nm were composed of smaller particles with a size of only a few nm, The magnetic properties of the particles were measured.