首页> 外文OA文献 >An S-Shaped Fe4Dy2 Complex Exhibiting Slow Relaxation of Magnetization: Synthesis, Magnetism, and Crystal Structures of a Family of Fe4Ln2Ln Coordination Compounds (Ln = Nd, Gd, Tb, Dy, and Ho)
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An S-Shaped Fe4Dy2 Complex Exhibiting Slow Relaxation of Magnetization: Synthesis, Magnetism, and Crystal Structures of a Family of Fe4Ln2Ln Coordination Compounds (Ln = Nd, Gd, Tb, Dy, and Ho)

机译:S型Fe4Dy2配合物,表现出磁化作用的缓慢弛豫:Fe4Ln2 Ln配位化合物家族的合成,磁性和晶体结构(Ln = Nd,Gd,Tb,Dy和Ho)

摘要

A series of heterobimetallic 3d−4f cluster coordination compounds has been synthesized using a Schiff-base ligand (H3L), a trinuclear iron(III) precursor complex and lanthanide nitrates as reactants. Five new isostructural complexes were prepared with the ligand in 4 different forms, i.e., neutral and 3 different levels of deprotonation, and with the general formula [FeIII4LnIII2(H2L)2(HL)2L2(CH3OH)2((CH3)3CCOO)2(NO3)2][LnIII(NO3)4(H3L)(CH3OH)]·NO3·H2O, where Ln is Nd, Gd, Tb, Dy, and Ho for compounds 1, 2, 3, 4, and 5, respectively. The single-crystal structures of two complexes were determined by X-ray diffraction, consisting of an original [FeIII4LnIII2]2+ moiety with a linear S-shaped [Ln-Fe4-Ln] core and an isolated LnIII ion coordinated by nitrate anions and the neutral Schiff-base ligand. The isostructural nature of all five coordination compounds is further illustrated both by XRPD and IR analysis. Magnetic properties of all five compounds have been studied and are discussed in light of magnetostructural considerations. Among these five compounds, the Dy (4) cluster shows frequency-dependent ac-susceptibility indicative of probable single-molecule magnet behavior.
机译:使用席夫碱配体(H3L),三核铁(III)前体络合物和硝酸镧系元素作为反应物,合成了一系列异双金属3d-4f簇配位化合物。制备了五种新的同构配合物,配体具有4种不同形式,即中性和3种不同水平的去质子化,通式为[FeIII4LnIII2(H2L)2(HL)2L2(CH3OH)2((CH3)3CCOO)2 (NO3)2] [LnIII(NO3)4(H3L)(CH3OH)]·NO3·H2O,其中Ln分别为化合物1、2、3、4和5的Nd,Gd,Tb,Dy和Ho 。通过X射线衍射确定两个配合物的单晶结构,其由具有线性S形[Ln-Fe4-Ln]核的原始[FeIII4LnIII2] 2+部分和由硝酸根阴离子配位的分离的LnIII离子组成。中性席夫碱配体。 XRPD和IR分析都进一步说明了所有五种配位化合物的同构性质。已经对所有五种化合物的磁性进行了研究,并根据磁性结构的考虑进行了讨论。在这五种化合物中,Dy(4)簇显示出随频率变化的交流磁化率,表明可能的单分子磁体行为。

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