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Breaking the Magic Border of One Second for Slow Magnetic Relaxation of Cobalt-Based Single Ion Magnets

机译:打破一秒钟的魔法边界,用于慢磁宽钴的单离子磁铁

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摘要

Instead of assembling complex clusters and/or expensive lanthanide-based systems as single ion magnets, we are focusing on mononuclear cobalt(II) systems among which the complex under study, [Co(pydca)(dmpy)](2)center dot H2O (1), shows a field supported slow magnetic relaxation on the order of seconds at low temperature (pydca = pyridine-2,6-dicarboxylato, dmpy = 2,6-dimethanolpyridine). The low-frequency relaxation time is as slow as tau(LF) = 1.35(6) s at T = 1.9 K and B-DC = 0.4 T. The properties of 1 are compared to the previously reported nickel and copper analogues which were the first examples of single ion magnets in the family of Ni(II) and Cu(II) complexes.
机译:而不是将复杂的簇和/或昂贵的基于镧系元素的系统组装为单离子磁铁,我们专注于单核钴(II)系统,其中包括在其中的复合物,[CO(Pydca)(DMPY)](2)中心点H2O (1),显示在低温下的秒数(PyDCA =吡啶-2,6-二羧酸盐,DMPY = 2,6-二甲醇吡啶)上支撑慢磁性弛豫的场。 低频松弛时间在t = 1.9 k和b-dc = 0.4t处为tau(lf)= 1.35(6)s等慢。与先前报道的镍和铜类似物相比,1的性质是如此 Ni(II)和Cu(II)复合物系列中单离子磁体的第一例。

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