Magnetic-phase transitions and magnetocaloric effects

被引:321
|
作者
Tegus, O
Brück, E
Zhang, L
Dagula
Buschow, KHJ
de Boer, FR
机构
[1] Univ Amsterdam, Van der Waals Zeeman Inst, NL-1018 XE Amsterdam, Netherlands
[2] Inner Mongolia Normal Univ, Dept Phys, Hohhot 010022, Peoples R China
关键词
magnetic-phase transition; magnetocaloric;
D O I
10.1016/S0921-4526(02)01119-5
中图分类号
O469 [凝聚态物理学];
学科分类号
070205 ;
摘要
We have studied the magnetocaloric properties of a variety of compounds, like Gd-5(Si1-xGex)(4) with x = 0.576 and 0.5875, MnFeP1-xAsx with x between 0.25 and 0.65, RTiGe with R = Tb, Dy, Ho, Er and Tm, Ni53Mn22Ga25, Mn5Si3, and Mn1.95Cr0.05Sb. These compounds have in common that they exhibit either temperature- or field-induced first-order magnetic-phase transitions. Gd-5(Si1-xGex)(4) exhibits simultaneously a magnetic and a structural transition, which is accompanied by a huge magnetic-entropy change. A temperature-induced ferromagnetic (FM) to paramagnetic (PM) transition and a magnetic-field-induced PM to FM transition which are both of first order are observed in MnFeP1-xAsx compounds. Here the magnetic-phase transitions are not accompanied by structural transitions. Nevertheless, a large magnetic-entropy change, comparable with that in Gd-5(Si1-xGex)(4), is observed in the MnFeP1-xAsx compounds. In several of the RTiGe compounds, an applied magnetic field induces an anti ferromagnetic (AF) to FM phase transition. Here, we observed a magnetic anisotropy dependence of the magnetic-entropy change. The Hensler alloy Ni53Mn22Ga25 exhibits a first-order martensitic transformation accompanied by a magnetic-phase transition around 220 K. The magnitude and the shape of the magnetic-entropy changes observed for this compound are quite different. Mn5Si3 compound exhibits two successive first-order magnetic-phase transitions and shows a different type of magnetocaloric effect (MCE). Mn1.95Cr0.05Sb exhibits an AF to FM phase transition and a negative MCE. The relationship between the magnetic-phase transitions and the MCE is discussed, based on the comparison of the observed MCEs and the exchange interactions in these materials. (C) 2002 Published by Elsevier Science B.V.
引用
收藏
页码:174 / 192
页数:19
相关论文
共 50 条
  • [31] A quantitative criterion for determining the order of magnetic phase transitions using the magnetocaloric effect
    Yan Law, Jia
    Franco, Victorino
    Miguel Moreno-Ramirez, Luis
    Conde, Alejandro
    Karpenkov, Dmitriy Y.
    Radulov, Iliya
    Skokov, Konstantin P.
    Gutfleisch, Oliver
    NATURE COMMUNICATIONS, 2018, 9
  • [32] MAGNETIC-PHASE TRANSITIONS OF ISING SURFACES WITH MODIFIED SURFACE-BULK COUPLING - A MONTE-CARLO STUDY
    VENDRUSCOLO, M
    ROVERE, M
    FASOLINO, A
    EUROPHYSICS LETTERS, 1992, 20 (06): : 547 - 552
  • [33] Magnetic phase transitions and giant magnetocaloric effect of EuTiO3 nanowires
    Wang, Xinyu
    Zhen, Siqi
    Min, Yi
    Zhou, Pengxia
    Huang, Yanyan
    Li, Jianfeng
    Zhong, Chonggui
    Dong, Zhengchao
    JOURNAL OF ALLOYS AND COMPOUNDS, 2016, 689 : 63 - 68
  • [34] The magnetic phase transitions and magnetocaloric effect in MnNi1-xCoxGe alloys
    Zhang, C. L.
    Chen, J.
    Wang, T. Z.
    Xie, G. X.
    Zhu, C.
    Wang, D. H.
    SOLID STATE COMMUNICATIONS, 2011, 151 (19) : 1359 - 1362
  • [35] THE MAGNETOCALORIC EFFECT OF TERBIUM DYSPROSIUM ALLOYS IN THE REGION OF MAGNETIC PHASE-TRANSITIONS
    NIKITIN, SA
    TISHIN, AM
    LEONTIEV, PI
    VESTNIK MOSKOVSKOGO UNIVERSITETA SERIYA 3 FIZIKA ASTRONOMIYA, 1990, 31 (01): : 66 - 69
  • [36] Multiple magnetic-phase transitions and critical behavior of charge-density wave compound TbTe3
    Yang, Z.
    Drew, A.
    van Smaalen, S.
    van Well, N.
    Pratt, F. L.
    Stenning, G. B. G.
    Karim, A.
    Rabia, K.
    JOURNAL OF PHYSICS-CONDENSED MATTER, 2020, 32 (30)
  • [37] Magnetostructural phase transitions and magnetocaloric effects in MnNiGe1-xAlx
    Samanta, Tapas
    Dubenko, Igor
    Quetz, Abdiel
    Temple, Samuel
    Stadler, Shane
    Ali, Naushad
    APPLIED PHYSICS LETTERS, 2012, 100 (05)
  • [38] Universal behavior for magnetic entropy change in magnetocaloric materials: An analysis on the nature of phase transitions
    Marcela Bonilla, Claudia
    Herrero-Albillos, Julia
    Bartolome, Fernando
    Miguel Garcia, Luis
    Parra-Borderias, Maria
    Franco, Victorino
    PHYSICAL REVIEW B, 2010, 81 (22)
  • [39] Thermodynamic model of the magnetocaloric effect near the first-order magnetic phase transitions
    Spichkin, YI
    Tishin, AM
    JOURNAL OF MAGNETISM AND MAGNETIC MATERIALS, 2005, 290 : 700 - 702
  • [40] Scaling analysis of phase transitions in magnetocaloric alloys
    Gozdur, Roman
    Najgebauer, Mariusz
    JOURNAL OF MAGNETISM AND MAGNETIC MATERIALS, 2020, 499