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Ultralow-field magnetocaloric materials for compact magnetic refrigeration

Engineering and Technology

Ultralow-field magnetocaloric materials for compact magnetic refrigeration

P. Liu, D. Yuan, et al.

Unlock the potential of magnetic refrigeration with LiREF₄ single crystals, as proven by the groundbreaking research of Peng Liu and colleagues. Achieving an astonishing magnetic entropy change of 16.7 Jkg⁻¹K⁻¹, this innovative material far outperforms the conventional gallium gadolinium garnet (GGG), revolutionizing technologies around liquid-helium temperatures.

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~3 min • Beginner • English
Abstract
Magnetic refrigeration around the liquid-helium temperature plays a critical role in many technological sectors. Even if gallium gadolinium garnet (GGG) has been regarded as the benchmark, its application is highly limited by the small magnetic entropy changes, the requirement of superconducting magnets, and the large device sizes. Here, we report that LiREF4 (RE = rare earth) single crystals exhibit significantly superior magnetocaloric performance levels to commercial GGG. Under a small magnetic field of 5 kOe, which can be easily achieved by a permanent magnet, the magnetic entropy change reaches a record-high value of 16.7 J kg−1 K−1 in LiHoF4 in contrast to the value of 1.0 J kg−1 K−1 in GGG. The combination of small driving fields, large entropy changes, and excellent thermal and/or magnetic reversibility enables this series to be employed as the ideal working material for compact magnetic refrigeration around the liquid-helium temperature.
Publisher
NPG Asia Materials
Published On
Mar 15, 2023
Authors
Peng Liu, Dongsheng Yuan, Chao Dong, Gaoting Lin, Encarnación G. Villora, Ji Qi, Xinguo Zhao, Kiyoshi Shimamura, Jie Ma, Junfeng Wang, Zhidong Zhang, Bing Li
Tags
magnetic refrigeration
LiREF₄
magnetocaloric performance
magnetic entropy change
liquid-helium temperatures
gallium gadolinium garnet
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