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首页> 外文期刊>Chemical Physics: A Journal Devoted to Experimental and Theoretical Research Involving Problems of Both a Chemical and Physical Nature >Anisotropic exchange interactions in [Ln3+-Fe-LS(3+)] dinuclear systems (Ln(3+) = dy, tm, yb): Magnetometry and dual mode x-band electron paramagnetic resonance spectroscopic study
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Anisotropic exchange interactions in [Ln3+-Fe-LS(3+)] dinuclear systems (Ln(3+) = dy, tm, yb): Magnetometry and dual mode x-band electron paramagnetic resonance spectroscopic study

机译:[Ln3 + -Fe-LS(3+)]双核系统(Ln(3+)= dy,tm,yb)中的各向异性交换相互作用:磁力计和双模x波段电子顺磁共振光谱研究

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A recently developed experimental and theoretical procedure is used in order to calculate the magnitude and anisotropy of interaction between a lanthanide and a 3d-metal ion. The general formula of the molecular compounds is [Ln(H2O)(3)(dmf)(4)(mu-CN)Fe-(CN)(5)] center dot nH(2)O where 1 <= n <= 1,5 and dmf = N,N'-dimethylformamide, abbreviated as [LnFe] from now on. The main parts of this procedure are (a) the evaluation of the effective g-parameters of the lanthanide ion with the help of EPR measurements. (b) The use of dual mode EPR spectroscopy to define the anisotropic exchange interactions with the help of an anisotropic Hamiltonian model. (c) Use of the same magnetic model to fit magnetization and susceptibility data in order to verify the EPR findings. It was possible to define some trends concerning the exchange components of the [DyFe] dimer according to which the antiferromagnetic isotropic exchange constant is smaller than 4 cm(-1) and the anisotropic components are [D-exc,E-exc]= [>= 6(1),0.0]cm(-1). Also for the case of [TmFe] and [YbFe] dirners the antiferromagnetic isotropic exchange constant is smaller than 0.3 cm-1 while the anisotropic components are [D-exc,E-exc] = [>= 12.0,0.0] cm(-1) and [D-exc, E-exc] = [0.4(1),0.0]cm(-1), respectively. (c) 2007 Elsevier B.V. All rights reserved.
机译:为了计算镧系元素和3d金属离子之间相互作用的幅度和各向异性,使用了最近开发的实验和理论方法。分子化合物的通式为[Ln(H2O)(3)(dmf)(4)(mu-CN)Fe-(CN)(5)]中心点nH(2)O,其中1 <= n <= 1,5和dmf = N,N'-二甲基甲酰胺,从现在开始缩写为[LnFe]。该程序的主要部分是(a)借助EPR测量来评估镧系元素离子的有效g参数。 (b)在各向异性哈密顿模型的帮助下,使用双模EPR光谱法定义各向异性交换相互作用。 (c)使用相同的磁性模型拟合磁化强度和磁化率数据,以验证EPR的发现。可以定义一些有关[DyFe]二聚体交换组分的趋势,根据这些趋势,反铁磁各向同性交换常数小于4 cm(-1),且各向异性组分为[D-exc,E-exc] = [ > = 6(1),0.0] cm(-1)。同样对于[TmFe]和[YbFe]的情况,反铁磁各向同性交换常数小于0.3 cm-1,而各向异性成分为[D-exc,E-exc] = [> = 12.0,0.0] cm(- 1)和[D-exc,E-exc] = [0.4(1),0.0] cm(-1)。 (c)2007 Elsevier B.V.保留所有权利。

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