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Magnetic Properties and Coercivity of MnGa Films Deposited on Different Substrates 被引量:2
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作者 J.N.Feng W.Liu +4 位作者 W.J.Gong X.G.Zhao D.Kim c.j.choi Z.D.Zhang 《Journal of Materials Science & Technology》 SCIE EI CAS CSCD 2017年第3期291-294,共4页
MnGa films were grown by magnetron sputtering on thermally oxidized Si(Si/SiO2) and glass substrates. Films grown on single-crystal Si(100) substrate with different underlayers were prepared for comparison. It is ... MnGa films were grown by magnetron sputtering on thermally oxidized Si(Si/SiO2) and glass substrates. Films grown on single-crystal Si(100) substrate with different underlayers were prepared for comparison. It is found that the Si/SiO2 substrate is more suitable for growing high-coercivity MnGa films than the glass substrate, which is the result of the isolated-island-like growth. A coercivity of 9.7 kOe can be achieved for the 10 nm MnGa films grown on Si/SiO2 substrate at substrate temperature TS of 450 °C.Optimized experimental conditions are specified by changing the thickness of the MnGa films and the temperature of the substrates. 展开更多
关键词 Atomic force microscopy Coercivity Magnetic properties Magnetron sputtering Thin film
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Synthesis and Magnetic Properties of Nanoparticles of Fe-Co Alloys and Their Oxides Prepared by Chemical Vapor Condensation
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作者 ZhenhuaWANG ZhidongZHANG +2 位作者 c.j.choi B.K.Kim J.C.Kim 《Journal of Materials Science & Technology》 SCIE EI CAS CSCD 2004年第4期459-462,共4页
Nanoparticles of Fe-Co alloys and their oxides with the particle size below 20 nm were prepared by chemical vapor condensation process. The pure Ar, Ar+1%O2, Ar+3%O2 and Ar+6%O2 were used as carrier gases, with iron c... Nanoparticles of Fe-Co alloys and their oxides with the particle size below 20 nm were prepared by chemical vapor condensation process. The pure Ar, Ar+1%O2, Ar+3%O2 and Ar+6%O2 were used as carrier gases, with iron carbonyl and cobalt carbonyl as the precursors. XRD patterns showed that Fe-Co metallic nanoparticles were synthesized by using pure Ar as carrier gas, and only metal oxides were obtained using Ar+(>3)%O2 as carrier gas. The HRTEM images and TG-DTA curves were used to study the core-shell structure of the different nanoparticles. The nanoparticles obtained in pure Ar consist of black core and light shell with thickness of 2~4 nm. However, in the particles obtained in Ar+6%02, the oxides core with visible lattice fringes are surrounded by thin shell. 展开更多
关键词 Fe-Co NANOPARTICLES HRTEM CVC
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