Classical spin liquid state in a rhombic lattice metal-organic framework

Sihua Feng,Chao Wang,Jiyin Zhao,Xuguang Liu, Chaocheng Liu,Zeming Qi, Lei Chen, Huijuan Wang,Minghui Fan, Hengli Duan,Wensheng Yan

NANO RESEARCH(2023)

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摘要
Discovering more and new geometrically frustrated systems remains an active point of inquiry in fundamental physics for the existence of unusual states of matter. Here, we report spin-liquid-like behavior in a two-dimensional (2D) rhombic lattice Fe-metal-organic framework (Fe-MOF) with frustrated antiferromagnetism. This Fe-MOF exhibits a high frustration factor f = divide ?(CW) divide /T-N = 315, and its long-range magnetic order is suppressed down to 180 mK. Detailed theoretical calculations demonstrate strong antiferromagnetic coupling between adjacent Fe3+ ions, indicating the potential of a classical spin-liquid-like behavior. Notably, a T-linear heat capacity parameter, ?, originating from electronic contributions and with magnetic field independence up to 8 T, can be observed in the specific heat capacity measurements at low-temperature, providing further proof for the spin-liquid-like behavior. This work highlights the potential of MOF materials in geometrically frustrated systems, and will promote the research of exotic quantum physics phenomena.
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关键词
spin-liquid-like state,two-dimensional metal-organic framework (2D MOF),rhombic lattice,ultralow temperature (ULT) measurements,spin-frustrated
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