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Field-Induced Co(II) Single-Ion Magnets with mer-Directing Ligands but Ambiguous Coordination Geometry

机译:具有MER引导配体的现场诱导的CO(II)单离子磁铁,但含糊不清的配体几何形状

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摘要

Three air-stable Co(II) mononuclear complexes with different aromatic substituents have been prepared and structurally characterized by single crystal X-ray diffraction. The mononuclear complexes [Co(H2L1)(2)]center dot 2THF (1), [Co(HL2)(2)] (2), and [Co(H2L3)(2)]center dot CH2Cl2 (3) (where H3L1, H2L2, and H3L3 represent 3-hydroxy-naphthalene-2-carboxylic acid (6-hydroxymethyl-pyridin-2-yl-methylene) hydrazide, nicotinic acid (6-hydroxymethyl-pyridin-2-ylmethylene) hydrazide, and 2-hydroxy-benzoic acid (6-hydroxymethyl-pyridin-2-ylmethylene) hydrazide, respectively) feature a distorted mer octahedral coordination geometry. Detailed magnetic studies of 1-3 have been conducted using direct and alternating current magnetic susceptibility data. Field-induced slow magnetic relaxation was observed for these three complexes. There are few examples of such behavior in (distorted) octahedral coordination geometry (OC) Co(II) mononuclear complexes with uniaxial anisotropy. Analysis of the six-coordinate Co (II) mononuclear single ion magnets (SIMs) in the literature using the SHAPE program revealed that they all show what is best described as distorted trigonal prismatic (TRP) coordination geometry, and in general, these show negative D zero-field splitting (ZFS) values. On the other hand, all the Co(II) mononuclear complexes displaying what is best approximated as distorted octahedral (OC) coordination geometry show positive D values. In the new Co(II) mononuclear complexes we describe here, there is an ambiguity, since the rigid tridentate ligands confer what is best described for an octahedral complex as a mer coordination geometry, but the actual shape of the first coordination sphere is between octahedral and trigonal prismatic. The negative D values observed experimentally and supported by high-level electronic structure calculations are thus in line with a trigonal prismatic geometry. However, a consideration of the rhombicity as indicated by the E value of the ZFS in conjunction with the SHAPE analysis shows that in this case it is difficult to distinguish between the OC and TRP descriptions.
机译:通过单晶X射线衍射制备并在结构表征中制备具有不同芳族取代基的三种空气稳定CO(II)单核复合物。单核复合物[CO(H2L1)(2)]中心点2tHF(1),[CO(HL2)(2)](2),和[CO(H2L3)(2)]中心点CH2CL2(3)(其中H3L1,H 2L 2和H3L3代表3-羟基 - 萘-2-羧酸(6-羟甲基 - 吡啶-2-基 - 亚甲基)酰肼,烟酸(6-羟甲基 - 吡啶-2-基甲基)酰肼,2-分别羟基 - 苯甲酸(6-羟基甲基吡啶-2-基甲基)酰肼特征具有扭曲的ME八面体配位几何形状。使用直接和交流磁化率数据进行了1-3的详细磁性研究。对于这三个配合物,观察到逼真的缓慢磁性松弛。少数(扭曲)八面体配位几何(OC)CO(II)单核复合物中的这种行为的实例少于单轴各向异性。使用形状程序的文献中的六坐标CO(ii)单核单离子磁铁(SIMS)的分析显示,它们都显示出最佳被描述为扭曲的三角形棱镜(TRP)协调几何形状,通常,这些显示为负d零场拆分(ZFS)值。另一方面,所有CO(II)单核复合物显示最佳近似为扭曲的八面体(OC)协调几何形状显示阳性D值。在新的Co(II)单核络合物中,我们在此描述,存在含糊不清的,因为刚性三齿配体赋予八面体复合物作为MER协调几何形状最佳描述的,但第一个协调球体的实际形状是在八面体之间和三角形棱镜。因此,通过高级电子结构计算观察并由高级电子结构计算的负载的负数值与三角棱镜几何形状一致。然而,与ZFS的E值结合形状分析的E值表明,在这种情况下,ZFS的E值表明,在这种情况下难以区分OC和TRP描述。

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