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Magnetic Properties and Magnetocaloric Effects in R PdAl (R=Gd Er)(PDF)

MATERIALS CHINA[ISSN:1674-3962/CN:61-1473/TG]

Issue:
2013年第2期
Page:
31-40
Research Field:
特约研究论文
Publishing date:

Info

Title:
Magnetic Properties and Magnetocaloric Effects in R PdAl (R=Gd Er)
Author(s):
XU Zhiyi1 SHEN Jun2 SHEN Baogen1
(1. State Key Laboratory for Magnetism, Institute of Physics, Chinese Academy of Sciences, Beijing 100190, China)
(2. Key Laboratory of Cryogenics, Technical Institute of Physics and Chemistry, Chinese Academy ofSciences, Beijing 100190, China)
Keywords:
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CLC:

PACS:
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DOI:
10.7502/j.issn.1674-3962.2013.02.03
DocumentCode:

Abstract:
In this article, the investigation progress is reviewed in magnetic field and temperature dependences of the magnetic properties and magnetocaloric effects (MCEs) for RPdAl compounds with the orthorhombic TiNiSitype (LTM) and the hexagonal ZrNiAltype (HTM) structures. The LTMRPdAl (R=Gd, Tb, Dy, Ho and Er) compounds are found to be antiferromagnet with the Néel temperature TN=31, 45, 21, 10 and 10 K, respectively. It has been confirmed that the HTMRPdAl (R=Tb, Ho and Er) compounds undergo the antiferromagnetic (AFM)toparamagnetic (PM) transition at TN=43, 12 and 5 K, while the HTMRPdAl (R=Gd and Dy) compounds undergo the ferromagnetic (FM)toPM transition at their respective Curie temperature, which is TC =49 K and 25 K, respectively. A fieldinduced metamagnetic transition from AFM to FM state is observed below TN in the antiferromagnetic RPdAl. For the HTMRPdAl (R=Ho and Er) compounds, a small magnetic field can induce an FMlike state due to a weak AFM coupling, which leads to a high saturation magnetization, and gives rise to a large MCE around TN. The maximum value of magnetic entropy change (ΔSM) reaches -206 and -243 J/kg·K with a refrigerant capacity (RC) value of 386 and 299 J/kg around TN for a field change of 0~5 T, respectively. The large ΔSM and considerable RC suggest that HTMRPdAl may be an appropriate candidate for magnetic refrigerant in low temperature ranges.

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Last Update: 2013-01-31