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源自六齿席夫碱的双核CoII/GdIII和CoIII/GdIII配合物:合成、结构及磁性

Dinuclear CoII/GdIII and CoIII/GdIII complexes derived from hexadentate Schiff bases: synthesis, structure, and magnetic properties.

作者信息

Costes Jean-Pierre, Dahan Françoise, García-Tojal Javier

机构信息

Laboratoire de Chimie de Coordination, CNRS 205 route de Narbonne, 31077 Toulouse, France.

出版信息

Chemistry. 2002 Dec 2;8(23):5430-4. doi: 10.1002/1521-3765(20021202)8:23<5430::AID-CHEM5430>3.0.CO;2-O.

Abstract

Two heterodimetallic complexes of formulae [LCo(MeOH)Gd (NO3)3] (1) and [LCo(AcO)2Gd(NO3)2] (2) (H2L = 1,3-bis[(3-methoxysalicylidene)amino]-2,2'-dimethylpropane) have been synthesized and characterized. The structure of 1 consists of discrete dinuclear entities. The cobalt(II) ion exhibits a square-pyramidal geometry, in which the basal plane is formed by the N2O2 set of the inner Schiff base site and the apical position is occupied by the methanol oxygen atom. The gadolinium(III) ion is ten-coordinate to three bidentate nitrate groups and the four oxygen atoms of the Schiff base. The phenolate oxygen atoms act as a bridge between both metal ions. Complex 2 is also formed by isolated dinuclear species. The cobalt(III) ion shows a distorted octahedral geometry in which the equatorial plane is formed by the N2O2 set of the Schiff base, and the axial positions are occupied by two oxygen atoms from both acetate groups. The gadolinium(III) ion is ten-coordinate to two bidentate nitrate groups, two oxygen atoms of the acetate groups, and the four oxygen atoms of the Schiff base. The metal ions are bridged through both the phenolate oxygen and the acetate groups, the latter acting as mu 2 ligands. Magnetic measurements on compound 1 allowed, for the first time, a quantitative evaluation of the J(Co,Gd) ferromagnetic interaction parameter (J = 0.90 cm-1). The CoII zero-field splitting has to be taken into account to fit the experimental data at low temperature (D = 4.2 cm-1). In complex 2, the magnetically isolated gadolinium center obeys a Curie law.

摘要

已合成并表征了两种通式为[LCo(MeOH)Gd(NO₃)₃] (1)和[LCo(AcO)₂Gd(NO₃)₂] (2)的异双核配合物(H₂L = 1,3 - 双[(3 - 甲氧基水杨醛)氨基]-2,2'-二甲基丙烷)。配合物1的结构由离散的双核实体组成。钴(II)离子呈现出四方锥几何构型,其中基面由内 Schiff 碱位点的N₂O₂基团形成,顶端位置由甲醇氧原子占据。钆(III)离子与三个双齿硝酸根基团以及 Schiff 碱的四个氧原子形成十配位。酚氧原子充当两个金属离子之间的桥连。配合物2也由孤立的双核物种形成。钴(III)离子显示出扭曲的八面体几何构型,其中赤道面由 Schiff 碱的N₂O₂基团形成,轴向位置由两个乙酸根基团的氧原子占据。钆(III)离子与两个双齿硝酸根基团、乙酸根基团的两个氧原子以及 Schiff 碱的四个氧原子形成十配位。金属离子通过酚氧和乙酸根基团桥连,后者作为μ₂配体。对化合物1的磁性测量首次实现了对J(Co,Gd)铁磁相互作用参数(J = 0.90 cm⁻¹)的定量评估。在低温下拟合实验数据时必须考虑CoII的零场分裂(D = 4.2 cm⁻¹)。在配合物2中,磁性孤立的钆中心遵循居里定律。

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