磁制冷
铁磁性
金属间化合物
磁化
材料科学
稀土
凝聚态物理
居里温度
基态
磁场
结晶学
铁磁性
化学
物理
冶金
原子物理学
合金
量子力学
作者
Pierric Lemoine,A. Vernière,Thomas Mazet,B. Malaman
标识
DOI:10.1016/j.jmmm.2011.06.012
摘要
The magnetic and magnetocaloric properties of the R6Mn23 compounds (R=Y, Nd, Sm, Gd-Tm, Lu) are investigated from DC magnetization measurements. The results are analyzed and discussed in connection with previously published data. These binaries crystallize in the cubic Th6Mn23 type of structure (Fm-3m). The Mn sublattice orders at high temperature (398 K≤TC≤505 K) with a collinear ferrimagnetic structure. The R sublattice orders at lower temperature (<100 K) with a non-collinear arrangement. By opposition with the usual behaviour in intermetallics, light rare-earth compounds (R=Nd and Sm) have a lower ground state magnetization than the heavy rare-earth compounds (R=Gd-Tm). This manifests in their magnetocaloric response near the R ordering temperature: the compounds with R=Gd-Tm display a normal magnetocaloric effect of moderate magnitude (<50 mJ cm−3 K−1 for a field variation of 5 T) while those with R=Nd and Sm present an inverse magnetocaloric effect of weaker magnitude. The potential interest of these phases for cooling applications is briefly discussed.
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