中国物理B ›› 2026, Vol. 35 ›› Issue (7): 77502-077502.doi: 10.1088/1674-1056/ae3693
所属专题: TOPICAL REVIEW — Multiferroicity and multicaloric effects
Fengqi Zhang(张烽起)† and Yang Ren(任洋)‡
收稿日期:2025-12-02
修回日期:2025-12-31
接受日期:2026-01-12
出版日期:2026-07-02
发布日期:2026-07-02
通讯作者:
Fengqi Zhang, Yang Ren
E-mail:fzhan7@cityu.edu.hk;yangren@cityu.edu.hk
基金资助:Fengqi Zhang(张烽起)† and Yang Ren(任洋)‡
Received:2025-12-02
Revised:2025-12-31
Accepted:2026-01-12
Online:2026-07-02
Published:2026-07-02
Contact:
Fengqi Zhang, Yang Ren
E-mail:fzhan7@cityu.edu.hk;yangren@cityu.edu.hk
Supported by:摘要: Solid-state magnetocaloric effects (MCEs) induced by external magnetic fields offer a promising pathway toward sustainable energy conversion technologies, utilizing field-driven temperature changes for efficient solid-state cooling and heating. This review examines magnetocaloric materials (MCMs) in the context of sustainable heat recycling, summarizing representative material systems and key advances from the past decade. The discussion is organized around a materials-applications-mechanism framework to provide a coherent perspective. Finally, we outline existing challenges and future opportunities in the field. Deeper mechanistic insight, combined with advances in manufacturing and the integration of artificial intelligence and machine learning, is expected to accelerate the development of magnetocaloric energy conversion technologies toward practical implementation. Such synergistic progress will accelerate the deployment of these technologies for carbon-neutral heat recycling.
中图分类号: (Magnetocaloric effect, magnetic cooling)
Fengqi Zhang(张烽起) and Yang Ren(任洋). Heat recycling with magnetocaloric materials for sustainable energy conversion[J]. 中国物理B, 2026, 35(7): 77502-077502.
Fengqi Zhang(张烽起) and Yang Ren(任洋). Heat recycling with magnetocaloric materials for sustainable energy conversion[J]. Chin. Phys. B, 2026, 35(7): 77502-077502.
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