Frustrated Spin-Hexamer Lattices with Enhanced Sub-Kelvin Magnetic Cooling
作者:Malik Ashtar, Xinyang Liu, Zhuang Zhaotong, Zhongpo Zhou, Junsen Xiang, Zhaoming Tian, Peijie Sun · 发表于:Chemistry of Materials · 年份:2025 · DOI:10.1021/acs.chemmater.5c01930 · 被引用次数:4 · 研究领域:Advanced Condensed Matter Physics、Physics of Superconductivity and Magnetism、Algebraic structures and combinatorial models
Significant efforts are being devoted to the exploration of spin–orbit frustrated magnets due to their potential to host novel quantum ground states. This work reports the synthesis, structure, magnetic, and magnetocaloric properties of LiSrRE 2 (BO 3 ) 3 (RE = Nd, Gd–Yb) series crystallizing in a trigonal ( P̅ 3 m 1) structure, where face-sharing of REO 9 polyhedra form spatially confined magnetic RE 6 hexamers. The RE 6 hexamer connections in the ab -plane constitute a triangular spin-hexamer lattice, interleaved by Sr 2+ /B 3+ nonmagnetic spacers along the c- axis. All LiSrRE 2 (BO 3 ) 3 compounds remain paramagnetic down to 1.8 K and exhibit significant magnetocaloric effects (MCE) in the sub-Kelvin regime. The cooling curves of the Gd and Nd compounds show signatures of cooperative magnetism, whereas the Ho and Yb counterparts exhibit continuous cooling to zero field, with the latter reaching a minimum temperature of 88 mK, demonstrating an excellent magnetic cooling performance. Specific heat measurements down to 0.1 K reveal an antiferromagnetic (AFM) transition at T N = 0.8 K in LiSrGd 2 (BO 3 ) 3, driven by the S = 7/2 spin-only moment. Meanwhile, LiSrNd 2 (BO 3 ) 3 with J eff = 1/2 moment shows only short-range correlations, with no sign of long-range order or spin freezing, indicating its potential as a quantum spin liquid (QSL) derived from the spin-hexamer lattice.