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场诱导 4f5d [Re(salen)]2O3[Dy(hfac)3(H2O)]2 单分子磁体。

Field induced 4f5d [Re(salen)]2O3[Dy(hfac)3(H2O)]2 single molecule magnet.

机构信息

L.A.M.M, Department of Chemistry and INSTM Research Unit, Università di Firenze, Via Della Lastruccia 3, 50019 Sesto Fiorentino, Italy.

出版信息

Inorg Chem. 2010 May 3;49(9):4355-61. doi: 10.1021/ic1003287.

Abstract

The reaction between the mononuclear [ReO(salen)(OMe)] (salen(2-) = N,N'-ethan-1,2-diylbis(salicylidenamine) dianion) and Dy(hfac)(3).2H(2)O (hfac(-) = 1,1,1,5,5,5-hexafluoroacetylacetonate anion) complexes lead to the formation of a compound with the formula {Re(salen)O(3)Dy(hfac)(3)(H(2)O)}(CHCl(3))(2)(CH(2)Cl(2))(2) noted (Dy(2)Re(2)). This compound has been characterized by single crystal and powder X-ray diffraction and has been found isostructural to the Y(III) derivative (Y(2)Re(2)) that we previously reported. The cyclic voltammetry demonstrates the redox activity of the system. The characterization of both static and dynamic magnetic properties is reported. Static magnetic data has been analyzed after the cancellation of the crystal field contribution by two different methods. Weak ferromagnetic exchange interactions between the Dy(III) ions are highlighted. The compound Dy(2)Re(2) displays slow relaxation of the magnetization when an external magnetic field is applied. Alternating current susceptibility shows a thermally activated behavior with pre-exponential factors of 7.13 (+/-0.10) x 10(-6) and 5.76 (+/-0.27) x 10(-7) s, and energy barriers of 4.19 (+/-0.02) and 8.52 (+/-0.55) K respectively for low and high temperature regimes.

摘要

单核 [ReO(salen)(OMe)](salen(2-) = N,N'-乙撑-1,2-二基双(水杨醛亚胺)二阴离子)与 Dy(hfac)(3).2H(2)O(hfac(-) = 1,1,1,5,5,5-六氟乙酰丙酮阴离子)复合物之间的反应导致形成一个化合物,其化学式为{Re(salen)O(3)Dy(hfac)(3)(H(2)O)}(CHCl(3))(2)(CH(2)Cl(2))(2),标记为(Dy(2)Re(2))。该化合物已通过单晶和粉末 X 射线衍射进行了表征,并且与我们之前报道的 Y(III)衍生物(Y(2)Re(2))具有同构性。循环伏安法证明了该系统的氧化还原活性。报告了其静态和动态磁性特性的表征。静态磁性数据已经通过两种不同的方法分析,以消除晶体场贡献。Dy(III)离子之间的弱铁磁交换相互作用得到了强调。当施加外磁场时,化合物 Dy(2)Re(2)显示出磁化的缓慢弛豫。交流磁化率表现出热激活行为,前指数因子分别为 7.13(+/-0.10) x 10(-6)和 5.76(+/-0.27) x 10(-7) s,以及能量壁垒分别为 4.19(+/-0.02)和 8.52(+/-0.55) K,分别用于低温和高温区。

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