首页> 外文期刊>Journal of Alloys and Compounds: An Interdisciplinary Journal of Materials Science and Solid-state Chemistry and Physics >A pathway to optimize the properties of magnetocaloric Mn2-xFexP1-yGey for magnetic refrigeration
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A pathway to optimize the properties of magnetocaloric Mn2-xFexP1-yGey for magnetic refrigeration

机译:优化磁热Mn2-xFexP1-yGey磁制冷性能的途径

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摘要

Magnetocaloric materials can be useful in magnetic refrigeration applications, but to be practical the magneto-refrigerant needs to have a very large magnetocaloric effect (MCE) near room temperature for modest applied fields (<2 T) with small hysteresis and magnetostriction, and should have a complete magnetic transition, and environmentally friendly. One system that may fulfill these requirements is Mn2-xFexP1-yGey, where a combined first-order structural and magnetic transition occurs between the high temperature paramagnetic and low temperature ferromagnetic phase. We have used neutron diffraction, differential scanning calorimetry, and magnetization measurements to study the effects of Mn and Ge location in the structure on the ordered magnetic moment, MCE, and hysteresis for a series of compositions of the system near optimal doping. The diffraction results indicate that the Mn ions located on the 3f site enhance the desirable properties, while those located on the 3 g sites are detrimental. The phase fraction that transforms, hysteresis of the transition, and entropy change can be affected greatly by both the compositional homogeneity and the particle size, and an annealing procedure has been developed that substantially improves the performance of all three properties of the material. We also establish a correlation between applied magnetic field to complete the transition and the temperature range of coexistence of the PM and FM phase. On the basis of these results we have identified a pathway to understand the nature and to optimize the MCE properties of this system for magnetic refrigeration applications. (C) 2016 Elsevier B.V. All rights reserved.
机译:磁热材料可用于磁制冷应用,但实际上,磁致冷剂需要在室温附近具有非常大的磁热效应(MCE),以用于具有较小磁滞和磁致伸缩的中等应用场(<2 T),并且应具有完整的磁性过渡,环保。可以满足这些要求的系统是Mn2-xFexP1-yGey,其中在高温顺磁性相和低温铁磁性相之间发生了组合的一阶结构和磁性跃迁。我们已经使用中子衍射,差示扫描量热法和磁化强度测量来研究了结构中Mn和Ge位置对接近最佳掺杂的一系列系统组成的有序磁矩,MCE和磁滞的影响。衍射结果表明,位于3f位的Mn离子增强了所需的性能,而位于3g位的Mn离子则有害。组成均匀性和粒径都可以极大地影响相变,相变滞后和熵变的相分率,并且已经开发出一种退火程序,可以显着改善材料的所有三种性能。我们还建立了施加磁场以完成过渡与PM和FM相共存的温度范围之间的相关性。根据这些结果,我们确定了一条途径,可以了解磁制冷应用的性质并优化该系统的MCE特性。 (C)2016 Elsevier B.V.保留所有权利。

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