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Nd3(Fe,Mo)29化合物及其氮化物的磁結(jié)構(gòu)和內(nèi)稟磁性
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Magnetic Transition and the Intrinsic Magnetic Properties of Nd_3 (Fe, Mo)_ (29) Compound and Its Nitride
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    摘要:

    制備了具有Nd3(Fe,Ti)29型單斜結(jié)構(gòu)的單相鐵基金屬間化合物Nd3(Fe,Mo)29及其氮化物,詳細(xì)研究了:其在4.2K~300K之間的磁結(jié)構(gòu);磁晶各向異性;居里溫度Tc,飽和磁化強(qiáng)度σs等內(nèi)稟磁性。研究結(jié)果表明:Nd3(Fe,Mo)29金屬間化合物氮化后仍保持母相結(jié)構(gòu),氮化后的晶胞體積,居里溫度Tc和飽和磁化強(qiáng)度σs分別比氮化前提高了5.9%,70.9%,6.6%;N3d(Fe,Mo)29金屬間化合物在230K左右存在自族重取向,溫度低于230K時(shí),其磁晶各向異性為錐面,溫度高于230K時(shí),其磁晶

    Abstract:

    The Nd3 (Fe,Mo)2, compound with the Nd, (Fe,Ti)29-type monoclinic structure and its nitride have been synthesized. The magnetic transition, lattice Parameters, and the intrinsic magnetic properties, including Curie temperature, Tc, saturation magnetization, and magnetocrystalline anisotropy, of the Nd3 (Fe,Mo)29compound have been studied. The results show that the nitride has a structure related to the parent, but the unit cell volume, Curie temperature, To, and saturation magnetization, are 5. 9%,70. 9% and 6. 6%, respectively, greater than those of parent compound. It is also found that the spin reorientation phenomenon occurs at about 230 K in the parent compound, and the magnetocrystalline anisotropy of the Nds (Fe,Mo)2, compound is an easy plane above 230 K and a cone from 4. 2 K to 230 K. After nitrogenation, this spin reorientation phenomenon disappears.

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潘洪革. Nd3(Fe, Mo)29化合物及其氮化物的磁結(jié)構(gòu)和內(nèi)稟磁性[J].稀有金屬材料與工程,1998,(5):263~266.[Pan Hongge. Magnetic Transition and the Intrinsic Magnetic Properties of Nd_3 (Fe, Mo)_ (29) Compound and Its Nitride[J]. Rare Metal Materials and Engineering,1998,(5):263~266.]
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