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室温磁制冷材料的研究现状 被引量:2

室温磁制冷材料的研究现状
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摘要 本文简要介绍了磁制冷的原理、历史,简述了磁热效应的表征,概述了近年来各室温磁制冷材料的研究进展及最新研究成果,展望了室温磁制冷材料的发展趋势。 The basic principle and history of magnetocaloric effect(MCE) have been introduced.The metods how to express the MCE have summerized.The development of room temperature magnetic refrigerants has been reviewed and the development trend of magnetic refrigerant has been provided.
出处 《中国西部科技》 2011年第22期10-10,2,共2页 Science and Technology of West China
基金 国家青年科学基金项目(51001033) 广西民族大学重大科项目(2008ZD010)资助
关键词 磁致冷材料 磁热效应 磁熵变量 Magnetic refrigerant Magnetocaloric effect Magnetic entropy change
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参考文献14

  • 1陈远富,陈云贵,滕保华,唐永柏,付浩,唐定骧,涂铭旌.磁制冷发展现状及趋势:Ⅱ磁制冷技术[J].低温工程,2001(2):57-63. 被引量:20
  • 2V. K. Pecharsky, K & Gschneicher Jr., Phys. Rev. Lett. 1997, 78:4494-4497.
  • 3V. K Pecharsky, K A Gschneicher Jr., J. Magn Mater. 1997,167:179.
  • 4Chen P.,Du Y.W.,Chinese Journal of Physic, 2001,39:357.
  • 5Mira J.,Rivas J.,et al.J Appl Pbys. 2002,91:8903.
  • 6Sun Y.,Zbang Y.B.,et al.J Magn Magn Mater. 2001,232:205.
  • 7A. N. Ulyanov, 3. S. Kim, G. M. Shin, V. M. Kang and S. I. Yoo, J. Phys. D:Appl. Phys. 2007, 40:123-126.
  • 8P. Sarkar, P. Mandal, and P. Choudhury. hpplied Physics Letters, 2008,92:182506.
  • 9Hu F.X.,Shen B.G.,Sun J.R. et al. Journal of Physics:Condensed Matter. 2000,12:691-696.
  • 10Hu F.X.,Shen B.G.,Sun J.R. et al. Applied Physics Letters. 2001,78:3675-3677.

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同被引文献48

  • 1陈远富,陈云贵,滕保华,唐永柏,付浩,唐定骧,涂铭旌.磁制冷发展现状及趋势:Ⅱ磁制冷技术[J].低温工程,2001(2):57-63. 被引量:20
  • 2Warburg E. Magnetische untersuchungen. Ann Phys Chem, 1881, 13:141-164.
  • 3Evangelisti M, Brechin EK. Recipes for enhanced molecular cooling. Dalton Trans, 2010, 39:4672-4676.
  • 4Sessoli R. Chilling with magnetic molecules. Angew Chem Int Ed, 2012, 51:43-45 (a).
  • 5Tortes, F Bobigas X, Hern;indez JM, Tejada J. Magnetocaloric effect in Mnl2 2-C1 benzoate. J Phys: Condens Matter, 2003, 15: 119-123; (b).
  • 6Spichkin YI, Zvezdin AK, Gubin SP, Mischenko AS, Tishin AM. Magnetic molecular clusters as promising materials for refrigeration in low-temperature regions. J Phys D: Appl Phys, 2001, 34:1162-1166 (a).
  • 7Manoli M, Johnstone RDL, Parsons S, Murrie M, Affronte M, Evangelisti M, Brechin EK. A ferromagnetic mixed-valent Mn supertetrahedron: Towards low-temperature magnetic refrigeration with molecular clusters. Angew Chem Int Ed, 2007, 46: 4456-4544; (b).
  • 8Manoli M, Collins A, Parsons S, Candini A, Evangelisti M, Brechin EK. Mixed-valent Mn supertetrahedra and planar discs as enhanced magnetic coolers. J Am Chem Soc, 2008, 130:11129-11139.
  • 9Nayak S, Evangelisti M, Powell AK, Reedijk J. Magnetothermal studies of a series of coordination clusters built from ferromagnetically coupled {MnU4Mnm6} supertetrahedral units. Chem Eur J, 2010, 16:12865-12872.
  • 10Liu JL, Leng JD, Lin Z, Tong ML. Ferromagnetic homometallic Mn19 cluster and heterometallic Na2Mn;s cluster with large spin state as magnetic refrigerants. Chem Asian J, 2011, 6:1007-1010.

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