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纳米晶Fe-Ni和Fe-Co粉的微波磁性能
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作者 吴子秋 张海燕 +1 位作者 曾国勋 陈易明 《宇航材料工艺》 CAS CSCD 北大核心 2008年第4期40-43,共4页
先利用溶胶凝胶自蔓延法制备铁镍和铁钴氧化物前驱体,通过对前驱体在氢气中进行热处理,制备得到还原Fe25Ni75、Fe50Ni50和Fe50Co50合金粉。通过SEM、XRD分别对合金粉进行了形貌和结构表征,测量了合金粉的静磁性能以及0.5~6 GHz的磁导率... 先利用溶胶凝胶自蔓延法制备铁镍和铁钴氧化物前驱体,通过对前驱体在氢气中进行热处理,制备得到还原Fe25Ni75、Fe50Ni50和Fe50Co50合金粉。通过SEM、XRD分别对合金粉进行了形貌和结构表征,测量了合金粉的静磁性能以及0.5~6 GHz的磁导率,并通过传输线理论计算了合金粉的微波吸收系数。结果表明:氢气还原后的Fe25Ni75、Fe50Ni50和Fe50Co50分别为单一Ni3Fe相、FeNi相和FeCo相,晶粒大小分别为53、66、36 nm,合金粉具有较高的比饱和磁化强度和磁导率,Fe50Ni50合金粉在2.5~6 GHz吸收系数低于-10 dB,具有优异的微波中低频段吸收性能。 展开更多
关键词 磁导率 纳米晶金属粒子 微波频率
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Effective Approach for the Synthesis of Monodisperse Magnetic Nanocrystals and M-Fe3O4 (M = Ag, Au, Pt, Pd) Heterostructures 被引量:11
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作者 Fang-hsin Lin Wei Chen +2 位作者 Yu-Hsiang Liao Reuy-an Doong Yadong Li 《Nano Research》 SCIE EI CAS CSCD 2011年第12期1223-1232,共10页
Monodisperse and size-tunable magnetic iron oxide nanoparticles (NPs) have been synthesized by thermal decomposition of an iron oleate complex at 310 ℃ in the presence of oleylamine and oleic acid. The diameters of... Monodisperse and size-tunable magnetic iron oxide nanoparticles (NPs) have been synthesized by thermal decomposition of an iron oleate complex at 310 ℃ in the presence of oleylamine and oleic acid. The diameters of the as-synthesized iron oxide NPs decrease with increasing concentrations of iron oleate complex and oleic acid/oleylamine. In addition, the size-dependent crystallinity and magnetic properties of iron oxide NPs are presented. It is found that larger iron oxide NPs have a higher degree of crystallinity and saturation magnetization. More importantly, various M-iron oxide heterostructures (M = Au, Ag, Pt, Pd) have been successfully fabricated by using the same synthesis procedure. The iron oxide NPs are grown over the pre-made metal seeds through a seed-mediated growth process. The physicochemical properties of Au-Fe3O4 heterostructures have been characterized by X-ray diffraction (XRD), superconducting quantum interference device (SQUID) magnetometry and UV-vis spectroscopy. The as-synthesized Au-Fe3O4 heterostructures show a red-shift in surface plasmon resonance peak compared with Au NPs and similar magnetic properties to Fe3O4 NPs. The heterojunction effects present in such nanostructures offer the opportunity to tune the irphysicochemical properties. Therefore, this synthesis process can be regarded as an efficient way to fabricate a series of heterostructures for a variety of applications. 展开更多
关键词 Iron oxides HETEROSTRUCTURES noble metal-iron oxide nanoparticles MONODISPERSE
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