磁制冷
范德瓦尔斯力
凝聚态物理
缩放比例
磁铁
各向异性
相变
磁各向异性
熵(时间箭头)
磁场
制冷
材料科学
磁通量
物理
磁能
标度律
临界现象
热力学
临界指数
磁化
对应态定理
饱和(图论)
作者
Haifeng Chen,Chen Hu,Zilu Xia,Liping Jiang,Haicheng Xuan,Yong Fang,Bin Qian,Jinlei Yao,Zhida Han
摘要
Two-dimensional (2D) van der Waals magnets are promising for low-dimensional solid-state refrigeration, but their relative cooling power (RCP) is often limited by modest magnetic entropy changes. Here, we show that CrSBr single crystals undergo successive three-step magnetic transitions, which broaden the working temperature window as magnetic refrigerant. This multistep behavior, combined with in-plane anisotropy along the b axis, yields a maximum magnetic entropy change of 4.9 J kg−1 K−1 under 7 T and a large RCP of 273.68 J kg−1 at 5 T, surpassing most reported 2D magnets. Critical scaling analysis reveals tricritical mean-field behavior near the intralayer ferromagnetic–paramagnetic transition. These results demonstrate that multistep transitions provide an effective route to enhance refrigeration efficiency, establishing CrSBr as a high-performance 2D magnetic refrigerant.
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