首页> 外文期刊>Chemistry: A European journal >Heterospin Single-Molecule Magnets Based on Terbium Ions and TCNQF4 Radicals: Interplay between Single-Molecule Magnet and Phonon Bottleneck Phenomena Investigated by Dilution Studies
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Heterospin Single-Molecule Magnets Based on Terbium Ions and TCNQF4 Radicals: Interplay between Single-Molecule Magnet and Phonon Bottleneck Phenomena Investigated by Dilution Studies

机译:基于Ter离子和TCNQF4自由基的杂旋单分子磁体:通过稀释研究研究的单分子磁体和声子瓶颈现象之间的相互作用

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A series of isostructural compounds with formula [MACHTUNGTRENUNG(TCNQF4)2- ACHTUNGTRENUNG(H2O)6]TCNQF4·3H2O (M=Tb (1), Y (2), Y:Tb (74:26) (3), and Y:Tb (97:3) (4); TCNQF4= tetrafluorotetracyanoquinodimethane) were prepared and their magnetic properties investigated. Compounds 1, 3, and 4 show the beginning of a frequency-dependent out-ofphase ac signal, and decreasing intensity of the signal with decreased concentration of TbIII ions in the diluted samples is observed. No out-of-phase signal was observed for 2, an indication that the behavior of 1, 3, and 4 is indicative of slow paramagnetic relaxation of TbIII ions in the samples. A more detailed micro-SQUID study at low temperature revealed an interplay between single-molecule magnetic (SMM) behavior and a phonon bottleneck (PB) effect, and that these properties depend on the concentration of diamagnetic yttrium ions. A combination of SMM and PB phenomena was found for 1, whereby the PB effect increases with increasing dilution until eventually a pure PB effect is observed for 2. The PB behavior is interpreted as being due to the presence of a “sea of organic S=1/2 radicals” from the TCNQF4 radicals in these compounds. The present data underscore the fact that the presence of an out-of-phase ac signal may not, in fact, be caused by SMM behavior, particularly when magnetic metal ions are combined with organic radical ligands such as those found in the organocyanide family.
机译:一系列具有结构式[MACHTUNGTRENUNG(TCNQF4)2- ACHTUNGTRENUNG(H2O)6] TCNQF4·3H2O的同构化合物(M = Tb(1),Y(2),Y:Tb(74:26)(3)和Y :制备Tb(97∶3)(4); TCNQF 4 =四氟四氰基喹二甲烷)并研究其磁性能。化合物1、3和4显示了频率相关的异相ac信号的开始,并且观察到稀释样品中TbIII离子的浓度随着信号强度的降低而降低。没有观察到2的异相信号,这表明1、3和4的行为指示了样品中TbIII离子的缓慢顺磁弛豫。低温下更详细的micro-SQUID研究表明,单分子磁性(SMM)行为与声子瓶颈(PB)效应之间存在相互作用,并且这些特性取决于抗磁性钇离子的浓度。发现1有SMM和PB现象的组合,其中PB效应随稀释度的增加而增加,直到最终对2观察到纯PB效应。PB行为被解释为是由于存在“有机S =这些化合物中的TCNQF4自由基中有“ 1/2自由基”。目前的数据强调了这样一个事实,即事实上,异相交流信号可能不是由SMM行为引起的,特别是当磁性金属离子与有机自由基配体(如在有机氰化物家族中发现的那些)结合时。

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