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首页> 外文期刊>Chemical science >Assessing the exchange coupling in binuclear lanthanide(III) complexes and the slow relaxation of the magnetization in the antiferromagnetically coupled Dy-2 derivative
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Assessing the exchange coupling in binuclear lanthanide(III) complexes and the slow relaxation of the magnetization in the antiferromagnetically coupled Dy-2 derivative

机译:评估双核镧系元素(III)配合物中的交换耦合和反铁磁耦合的Dy-2衍生物中磁化的缓慢弛豫

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We report here the synthesis and the investigation of the magnetic properties of a series of binuclear lanthanide complexes belonging to the metallacrown family. The isostructural complexes have a core structure with the general formula [Ga(4)Ln(2)(shi(3-))(4)(Hshi(2-))(2)(H(2)shi(-))(2)(C5H5N)(4)(CH3OH)(x)(H2O)(x)]center dot xC(5)H(5)N center dot xCH(3)OH center dot xH(2)O (where H(3)shi = salicylhydroxamic acid and Ln = Gd-III 1; Tb-III 2; Dy-III 3; Er-III 4; Y-III 5; (Y0.9Dy0.1III)-Dy-III 6). Apart from the Er-containing complex, all complexes exhibit an antiferromagnetic exchange coupling leading to a diamagnetic ground state. Magnetic studies, below 2 K, on a single crystal of 3 using a micro-squid array reveal an opening of the magnetic hysteresis cycle at zero field. The dynamic susceptibility studies of 3 and of the diluted DyY 6 complexes reveal the presence of two relaxation processes for 3 that are due to the excited ferromagnetic state and to the uncoupled Dy-III ions. The antiferromagnetic coupling in 3 was shown to be mainly due to an exchange mechanism, which accounts for about 2/3 of the energy gap between the antiferro- and the ferromagnetic states. The overlap integrals between the Natural Spin Orbitals (NSOs) of the mononuclear fragments, which are related to the magnitude of the antiferromagnetic exchange, are one order of magnitude larger for the Dy-2 than for the Er-2 complex.
机译:我们在这里报告了属于金属内陷家族的一系列双核镧系元素络合物的合成和磁性性质的研究。同构配合物具有核心结构,其通式为[Ga(4)Ln(2)(shi(3-))(4)(Hshi(2-))(2)(H(2)shi(-)) (2)(C5H5N)(4)(CH3OH)(x)(H2O)(x)]中心点xC(5)H(5)N中心点xCH(3)OH中心点xH(2)O(其中H (3)shi =水杨基异羟肟酸,Ln = Gd-III 1; Tb-III 2; Dy-III 3; Er-III 4; Y-III 5;(Y0.9Dy0.1III)-Dy-III 6。除含Er的配合物外,所有配合物均表现出反铁磁交换耦合,导致反磁性基态。使用微鱿鱼阵列在3 K的单晶上进行的2 K以下磁学研究揭示了零磁场下磁滞循环的开放。对3和稀释的DyY 6配合物的动态磁化研究表明,由于铁磁激发态和未结合的Dy-III离子,存在3个松弛过程的3个。图3中的反铁磁耦合主要是由于交换机制引起的,它占反铁磁态和铁磁态之间能隙的约2/3。与反铁磁交换的大小有关的单核片段的自然自旋轨道(NSO)之间的重叠积分,对于Dy-2比对Er-2络合物大一个数量级。

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