Journal Article10.1016/J.PMATSCI.2017.10.005
Magnetocaloric effect: From materials research to refrigeration devices
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TL;DR: The magnetocaloric effect and its most straightforward application, magnetic refrigeration, are topics of current interest due to the potential improvement of energy efficiency of cooling and temperature control systems, in combination with other environmental benefits associated to a technology that does not rely on the compression/expansion of harmful gases.
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About: This article is published in Progress in Materials Science. The article was published on 01 Apr 2018. The article focuses on the topics: Magnetic refrigeration.
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Citations
Energy Applications of Magnetocaloric Materials
TL;DR: In this paper, the authors present a historical and up-to-date account of the energy-related applications of magnetocaloric materials and information about their processing and magnetic fields, thermodynamics, heat transfer, and other relevant characteristics.
400
A quantitative criterion for determining the order of magnetic phase transitions using the magnetocaloric effect
Jia Yan Law,Victorino Franco,L.M. Moreno-Ramírez,A. Conde,Dmitriy Yu. Karpenkov,Iliya Radulov,Konstantin P. Skokov,Oliver Gutfleisch +7 more
TL;DR: A model-independent parameter allows evaluating the order of phase transition without any subjective interpretations, as it is shown for different types of materials and for the Bean–Rodbell model.
Colossal barocaloric effects in plastic crystals
Bing Li,Yukinobu Kawakita,Seiko Ohira-Kawamura,Takeshi Sugahara,Hui Wang,Hui Wang,Jingfan Wang,Yanna Chen,Saori I. Kawaguchi,Shogo Kawaguchi,Koji Ohara,Kuo Li,Dehong Yu,Richard A. Mole,Takanori Hattori,Tatsuya Kikuchi,Shinichiro Yano,Zhao Zhang,Zhao Zhang,Zhe Zhang,Zhe Zhang,Weijun Ren,Shangchao Lin,Shangchao Lin,Osami Sakata,Kenji Nakajima,Zhidong Zhang +26 more
TL;DR: Pressure-dependent neutron scattering measurements reveal that CBCEs in plastic crystals can be attributed to the combination of extensive molecular orientational disorder, giant compressibility and highly anharmonic lattice dynamics of these materials.
Recent progresses in exploring the rare earth based intermetallic compounds for cryogenic magnetic refrigeration
TL;DR: In this paper, the magnetic refrigeration (MR) technology which is based on the magnetocaloric effect (MCE) of magnetic solids has been considered as an energy-efficient alternative method to our present well used gas compression/expression refrigeration technology.
333
Electrocaloric Cooling Materials and Devices for Zero-Global-Warming-Potential, High-Efficiency Refrigeration
Junye Shi,Han Donglin,Li Zichao,Lu Yang,Sheng-Guo Lu,Zhifeng Zhong,Jiangping Chen,Qiming Zhang,Xiaoshi Qian +8 more
TL;DR: In this article, the authors present the recent advances in electrocaloric cooling technologies, from material improvements to device demonstrations, and evaluate the environmental impact and energy efficiency of the technology by the total effective warming impact and the material COP, respectively.
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Magnetocaloric effect in the pseudobinaries (Ho1-cRc)Co2 (R = Er and Dy)
TL;DR: In this article, the magnetocaloric effect in the Laves phase doped compounds (Ho1−c"]=> Er c )Co2 and (Ho 1−c¯¯¯¯ Dy c ǫ)Co2 was theoretically discussed.
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Growth and characterization of Pt-protected Gd5Si4 thin films
Ravi L. Hadimani,Yaroslav Mudryk,Timothy E. Prost,Vitalij K. Pecharsky,Karl A. Gschneidner,David Jiles +5 more
TL;DR: In this article, a thin film of binary compound of Gd5Si4 was deposited by pulsed laser deposition and was then covered with platinum on the top of the film to protect against any oxidation when the film was exposed to ambient conditions.
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Magnetocaloric and structural properties of SmMn2Ge2
Keiichi Koyama,Shihou Miura,Hironari Okada,Toru Shigeoka,Shun Fujieda,Asaya Fujita,Kazuaki Fukamichi,Kenichi Watanabe +7 more
TL;DR: In this paper, the authors performed detailed magnetization, specific heat and powder X-ray diffraction measurements under magnetic fields, for obtaining information on the magnetic and structural properties of reentrant ferromagnet SmMn 2 Ge 2 with the ThCr 2 Si 2 -type tetragonal structure.
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Magnetic, magnetocaloric and critical properties of Ni50−xCuxMn37Sn13 rapidly quenched ribbons
Do Tran Huu,Nguyen Hai Yen,Pham Thi Thanh,Nguyen Thi Mai,Tran Dang Thanh,Tran Dang Thanh,The-Long Phan,Seong Cho Yu,Nguyen Huy Dan +8 more
TL;DR: In this article, the magnetic, magnetocaloric and critical properties of Ni 50− x Cu x Mn 37 Sn 13 (x ǫ = 0, 1, 2, 4 and 8) rapidly quenched ribbons have been studied.
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