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首页> 外文期刊>Physical Review, B. Condensed Matter >Magnetic anisotropy of Fe-6 and Fe-10 molecular rings by cantilever torque magnetometry in high magnetic fields
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Magnetic anisotropy of Fe-6 and Fe-10 molecular rings by cantilever torque magnetometry in high magnetic fields

机译:Fe-6和Fe-10分子环在悬臂转矩磁强法中的强磁各向异性

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摘要

We studied the magnetic anisotropy of two molecular magnets, Fe-6 and Fe-10, which comprise six-and ten-membered rings of antiferromagnetically coupled iron (III) ions (S-i = 5/2), respectively. Spin-flip transitions induced by the applied magnetic field (up to 23 T) were investigated by cantilever torque magnetometry on microgram single crystals at very low temperature (down to 0.45 K). From the sharp, steplike variations of magnetic anisotropy at the transition fields, we determined the singlet-tripler energy gap (Delta(1)) and the axial zero-field splitting parameter (D-1) for the tripler state of Fe-6 [Delta(1) =15.28(1) cm(-1), D-1 = 4.32(3) cm(-1)] and Fe-10 [Delta(1) = 4.479(4) cm(-1), D-1 = 2.24(2) cm(-1)]. By analyzing the additional steps observed in the Fe-10 sample, we evaluated the Delta(S) and D-S parameters for the total-spin multiplets with S up to 5, On the basis of our findings, we discuss the origin of magnetic anisotropy in iron (III) rings and the application of torque magnetometry to the study of field induced level crossing in molecular magnets. [S0163-1829(99)01041-3]. [References: 28]
机译:我们研究了两种分子磁体Fe-6和Fe-10的磁各向异性,它们分别由六元和十元环的反铁磁耦合铁离子(S-i = 5/2)组成。在非常低的温度(低至0.45 K)下,通过微克单晶上的悬臂扭矩磁强计研究了由施加的磁场(高达23 T)感应的自旋翻转转变。根据跃迁场中的各向异性的急​​剧,阶梯状变化,我们确定了Fe-6三元态的单重态三重态能隙(Delta(1))和轴向零场分裂参数(D-1)。 Delta(1)= 15.28(1)cm(-1),D-1 = 4.32(3)cm(-1)]和Fe-10 [Delta(1)= 4.479(4)cm(-1),D -1 = 2.24(2)cm(-1)]。通过分析在Fe-10样品中观察到的其他步骤,我们评估了S高达5的全自旋多重峰的Delta(S)和DS参数。基于我们的发现,我们讨论了磁各向异性的起源。铁(III)环和扭矩磁强计在分子磁体中磁场感应的能级穿越研究中的应用。 [S0163-1829(99)01041-3]。 [参考:28]

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