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A Study of the Lack of Slow Magnetic Relaxation in Mononuclear Trigonal Bipyramidal Cobalt(II) Complexes

机译:一项研究单核三角形双锥钴(II)配合物缺乏缓慢的磁松弛的研究

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Two complexes of formula [Co(H2tba)(N3)]-MeOH (1) and [Co-(H2tba)(NCS)]-2DMF (2) [H3tba = tris(2-benzimidazolylmethyl) amine] were prepared and characterized aiming at investigating the influence of the structural and chemical effects on the Ising-type magnetic anisotropy in mononuclear trigonal bipyr-amidal cobalt(II) complexes. Each cobalt(II) ion in 1 is five-coordinate by a monodentate azide ligand and a tetradentate monodeprotonated H2tba-group building a slightly distorted trigonal bipyramidal surrounding. Compound 2 is also a mononuclear species whose structure was previously reported and only some of its structural data are considered in this work for comparative purposes. Detailed dc and ac cryomagnetic measurements of 1 and 2 show the lack of slow magnetic relaxation both in the presence and absence of applied dc fields. The profile of the XmT against T plots together with the non-superimposable M against H/T curves for 1 and 2 support the occurrence of high-spin Co(II) ions with an appreciable magnetic anisotropy. Q-band EPR studies on polycrystalline samples of these compounds at low temperatures confirm the positive value of the zero-field splitting (D), a strong asymmetry in the g-tensors and hence an easy plane of magnetization indicating stabilization of MS=±1/2 sublevels of the S = 3/2 spin state. A comparison of our results with previous magneto-structural reports on mononuclear trigonal bipyramidal cobalt (II) complexes that exhibit slow relaxation of the magnetization is carried out in order get deeper insights about the electronic and structural factors that would be at the origin of the lack of Single-Ion Magnet (SIM) behaviour for 1 and 2.
机译:配方奶粉[CO(H2TBA)(N3)]] - MEOH(1)和[CO-(H2TBA)(NCS)] - 2DMF(2)[H3TBA = TRIS(2-苯并二唑啉基甲基)胺]制备并制备了瞄准在研究结构和化学作用对单核三角骨 - 氨基钴(II)复合物中伊森型磁各向异性的影响时。 1中的每个钴(ii)离子是通过单齿叠氮化物配体和四齿单位型H2TBA组建筑物的五倍坐标。化合物2也是一种单核物种,以前是其结构,仅出于比较目的,仅考虑其一些结构数据。 1和2的详细DC和AC的冷冻磁测量表明,在存在和不存在应用DC场的情况下,缺乏缓慢的磁弛豫。 XMT针对T图的曲线与非耐药的M相对于H/T曲线1和2的2支持具有明显的磁各向异性的高旋转CO(II)离子的发生。在低温下这些化合物的多晶样品的Q波段EPR研究证实了零场分裂的正值(d),G量中强烈的不对称性,因此易于稳定的磁化平面,表明MS =±1 =±1 /2 s = 3/2旋转状态的分布。我们的结果与以前关于单核三角形双锥体钴(II)复合物的磁结构报告的比较,对磁化强度的放松缓慢,以便更深入地了解对电子和结构因素的深入见解1和2的单离子磁铁(SIM)行为。

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