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Magnetocaloric effect in high Gd content Gd-Fe-Al based amorphousanocrystalline systems with enhanced Curie temperature and refrigeration capacity

机译:高居里温度和制冷能力的高Gd含量的Gd-Fe-Al基非晶/纳米晶体系中的磁热效应

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The Gd-Fe-Al amorphousanocrystalline composites were successfully designed and obtained with both high Curie temperature (Tc) and large magnetic entropy change (ΔSM). The Tc can be tuned from 172 to 280 K and refrigeration capacity (RC) has a value between 690 and 867 J/kg under a field change of 0–5 T by changing the Gd contents and the formation of Gd nanocrystallites. And, ΔSM in Gd-Fe-Al amorphousanocrystalline composites reached a value of 7.2 J kg?1 K?1 under a field change of 0–5 T. The high RC in Gd-Fe-Al system were ascribed to the widening full width at half maximum (δFWHM) up to 240 K of the magnetic entropy change (ΔSMmax) peak because of the combination contribution of amorphous matrix and the precipitated Gd-riched nanocrystalline. Our research would shed light on how to design attractive candidates for magnetic refrigeration materials with high performance at near room temperature.
机译:成功设计并获得了具有高居里温度(Tc)和大磁熵变(ΔSM)的Gd-Fe-Al非晶/纳米晶复合材料。可以将Tc从172 K调整到280 K,并且通过改变Gd含量和Gd纳米微晶的形成,在0-5 T的磁场变化下,制冷量(RC)的值在690至867 J / kg之间。并且,在0-5 T的场变化下,Gd-Fe-Al非晶/纳米晶复合材料的ΔSM达到7.2 J kg?1 K?1。Gd-Fe-Al系统的高RC归因于拉宽。由于非晶基质和沉淀的富Gd纳米晶体的共同作用,最大半峰宽(δFWHM)高达240 K的磁熵变(ΔSMmax)峰值。我们的研究将揭示如何设计在室温附近具有高性能的磁性制冷材料的有吸引力的候选材料。

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