抗磁性
单分子磁体
磁铁
分子
结晶学
稀土
镧系元素
分子磁体
化学
桥(图论)
材料科学
磁场
物理
磁化
离子
有机化学
矿物学
医学
量子力学
内科学
作者
William R. Reed,Maja A. Dunstan,Robert W. Gable,Wasinee Phonsri,Keith S. Murray,Richard A. Mole,Colette Boskovic
出处
期刊:Dalton Transactions
[Royal Society of Chemistry]
日期:2019-01-01
卷期号:48 (41): 15635-15645
被引量:40
摘要
(μ-ba˙)] (3-RE) that incorporates a radical trianionic form of the bromanilate bridging ligand. Alternating current (ac) magnetic susceptibility studies of 2-Dy reveal slow magnetic relaxation only in the presence of an applied magnetic field, but reduction to radical-bridged 3-Dy affords frequency-dependent peaks in the out-of-phase ac susceptibility in zero applied field. Exchange coupling between the Dy(iii) ions and the radical bridging ligand thus reduces zero-field magnetisation quantum tunnelling and confers single-molecule magnet status on the complex. Comprehensive analysis of the magnetic relaxation data indicates that a combination of Orbach, Raman and direct relaxation processes are required to fit the data for both dysprosium bromanilate complexes.
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