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首页> 外文期刊>Angewandte Chemie >Fine-tuning the Local Symmetry to Attain Record Blocking Temperature and Magnetic Remanence in a Single-Ion Magnet
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Fine-tuning the Local Symmetry to Attain Record Blocking Temperature and Magnetic Remanence in a Single-Ion Magnet

机译:微调局部对称性以获得单离子磁体中的记录阻塞温度和剩磁

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摘要

Remanence and coercivity are the basic characteristics of permanent magnets. They are also tightly correlated with the existence of long relaxation times of magnetization in a number of molecular complexes, called accordingly single-molecule magnets (SMMs). Up to now, hysteresis loops with large coercive fields have only been observed in polynuclear metal complexes and metal-radical SMMs. On the contrary, mononuclear complexes, called single-ion magnets (SIM), have shown hysteresis loops of butterfly/phonon bottleneck type, with negligible coercivity, and therefore with much shorter relaxation times of magnetization. A mononuclear Er"' complex is presented with hysteresis loops having large coercive fields, achieving 7000 Oe at T= 1.8 K and field variation as slow as 1 h for the entire cycle. The coercivity persists up to about 5 K, while the hysteresis loops persist to 12 K. Our finding shows that SIMs can be as efficient as polynuclear SMMs, thus opening new perspectives for their applications.
机译:剩磁和矫顽力是永磁体的基本特征。它们还与许多分子复合物中存在长的磁化弛豫时间紧密相关,这些分子复合物被称为单分子磁体(SMM)。到目前为止,仅在多核金属配合物和金属自由基SMM中观察到具有大矫顽场的磁滞回线。相反,称为单离子磁体(SIM)的单核络合物显示出蝶形/声子瓶颈型磁滞回线,矫顽力可忽略不计,因此磁化弛豫时间短得多。呈现出具有大矫顽场的磁滞回线的单核Er“'络合物,在T = 1.8 K时达到7000 Oe,并且在整个周期中场变慢至1 h。矫顽力一直持续到大约5 K,而磁滞回线持续到12K。我们的发现表明,SIM卡可以和多核SMM一样有效,从而为它们的应用开辟了新的前景。

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