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KMBOF(M = 钴、铁):由三角形BO单元引导的具有三角形晶格的二维磁性氟氧化硼酸盐。

KMBOF (M = Co, Fe): two-dimensional magnetic fluorooxoborates with triangular lattices directed by triangular BO units.

作者信息

Wang Yanhong, Li Shuang, Dou Yaling, Li Hui, Lu Hongcheng

机构信息

Key Laboratory of Material Chemistry for Energy Conversion and Storage, School of Chemistry and Chemical Engineering, Hubei Key Laboratory of Bioinorganic Chemistry & Materia Medica, Huazhong University of Science and Technology, Wuhan, 430074, China.

出版信息

Dalton Trans. 2023 Oct 3;52(38):13555-13564. doi: 10.1039/d3dt02394j.

Abstract

Frustrated magnetic systems are of great interest owing to their spin liquid state for application in quantum computing. However, experimentally, spin liquid has not been realized. Thus, experimental explorations of frustrated magnetic systems including triangular lattices are still urgent, particularly for directed synthesis compared to random exploration. Herein, for the first time, directed by the use of a triangular unit of the BO anion group, two novel layered magnetic fluorooxoborates KMBOF (M = Co 1, Fe 2) with triangular lattices have been hydrothermally synthesized and characterized. Compounds 1 and 2 are isostructural and crystallize in the 2/ space group with layered magnetic triangular lattices, which are further separated by K ions. Magnetic susceptibility curves of both 1 and 2 show no λ-anomaly peak down to a low temperature of 2 K in the absence of a magnetic long-range ordering transition, which are further confirmed by the heat capacity results. The magnetic-field dependence of magnetization at 2 K shows saturation of 2.20 for 1 and 4.24 for 2, respectively, at 7 T, after roughly subtracting the Van Vleck paramagnetic contribution. Further in-depth investigation of the underlying physics at a lower temperature below 2 K would be subsequently performed. Moreover, thermal stability and FT-IR and UV-vis-NIR spectroscopy with optical bandgap properties are also reported. Most importantly, our work provides a promising method to experimentally realize specific magnetic lattices ( triangular lattices) directed by the use of triangular groups ( BO) as the functional unit.

摘要

由于其自旋液体态在量子计算中的应用,受挫磁系统备受关注。然而,在实验中,自旋液体尚未实现。因此,对包括三角晶格在内的受挫磁系统进行实验探索仍然十分迫切,特别是与随机探索相比,定向合成更是如此。在此,首次以BO阴离子基团的三角形单元为导向,水热合成并表征了两种具有三角晶格的新型层状磁性氟氧化硼酸盐KMBOF(M = Co 1,Fe 2)。化合物1和2同构,在2/空间群中结晶,具有层状磁性三角晶格,进一步被K离子隔开。1和2的磁化率曲线在低温至2 K时均未显示λ异常峰,表明不存在磁长程有序转变,这一结果通过热容测量得到进一步证实。在2 K时,分别减去范弗莱克顺磁贡献后,1和2在7 T磁场下的磁化强度对磁场的依赖性显示饱和值分别为2.20和4.24。随后将对低于2 K的更低温度下的潜在物理机制进行更深入的研究。此外,还报道了热稳定性以及具有光学带隙性质的傅里叶变换红外光谱和紫外-可见-近红外光谱。最重要的是,我们的工作提供了一种有前景的方法,可通过使用三角形基团(BO)作为功能单元来实验实现特定的磁晶格(三角晶格)。

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