Sarkar Biswarup, Ray Mau Sinha, Li Yi-Zhi, Song You, Figuerola Albert, Ruiz Eliseo, Cirera Jordi, Cano Joan, Ghosh Ashutosh
Department of Chemistry, University College of Science, University of Calcutta, Kolkata, India.
Chemistry. 2007;13(33):9297-309. doi: 10.1002/chem.200700628.
Three new trinuclear copper(II) complexes, [(CuL(1))(3)(micro(3)-OH)]ClO(4).3 H(2)O (1), [(CuL(2))(3)(micro(3)-OH)]ClO(4).H(2)O (2), and [(CuL(3))(3)(micro(3)-OH)]ClO(4).7 H(2)O (3) have been synthesized from the three tridentate Schiff bases HL(1), HL(2), and HL(3) (HL(1)=6- aminomethyl-3-methyl-1-phenyl-4-azahex-2-en-1-one, HL(2)=6-aminoethyl-3-methyl-1-phenyl-4-azahex-2-en-1-one, and HL(3)=6-aminodimethyl-3-methyl-1-phenyl-4-azahex-2-en-1-one). They have been characterized by X-ray crystallography and IR and UV spectroscopy, and their magnetic properties have been investigated. All the compounds contain a partial cubane [Cu(3)O(4)] core consisting of the trinuclear unit (CuL)(3)(micro(3)-OH), perchlorate ions, and water molecules. In each of the complexes, the copper atoms are five-coordinate with a distorted square-pyramidal geometry except complex 1, in which one of the Cu(II) of the trinuclear unit is weakly coordinated to one of the perchlorate ions. Magnetic measurements performed in SQUID MPMS-XL7 using polycrystalline samples at an applied field of 2 kOe indicate a global intramolecular ferromagnetic coupling. Magnetostructural correlations have been calculated on the basis of theoretical models without symmetry restriction. Continuous shape measurements are an appropriate tool for establishing the degree of distortion of the Cu(II) from square-planar geometry. Structural, theoretical, and experimental magnetic data indicate that the higher the degree of distortion, the greater the ferromagnetic coupling.
由三种三齿席夫碱HL(1)、HL(2)和HL(3)(HL(1)=6-氨甲基-3-甲基-1-苯基-4-氮杂己-2-烯-1-酮,HL(2)=6-氨乙基-3-甲基-1-苯基-4-氮杂己-2-烯-1-酮,HL(3)=6-氨二甲基-3-甲基-1-苯基-4-氮杂己-2-烯-1-酮)合成了三种新型三核铜(II)配合物,即[(CuL(1))(3)(μ(3)-OH)]ClO(4)·3H(2)O (1)、[(CuL(2))(3)(μ(3)-OH)]ClO(4)·H(2)O (2)和[(CuL(3))(3)(μ(3)-OH)]ClO(4)·7H(2)O (3)。通过X射线晶体学、红外光谱和紫外光谱对它们进行了表征,并研究了它们的磁性。所有化合物都含有一个由三核单元(CuL)(3)(μ(3)-OH)、高氯酸根离子和水分子组成的部分立方烷[Cu(3)O(4)]核。在每个配合物中,铜原子为五配位,具有扭曲的四方锥几何构型,但配合物1除外,其中三核单元的一个Cu(II)与一个高氯酸根离子弱配位。在2 kOe的外加磁场下,使用多晶样品在SQUID MPMS-XL7中进行的磁性测量表明存在整体分子内铁磁耦合。基于无对称性限制的理论模型计算了磁结构相关性。连续形状测量是确定Cu(II)偏离平面正方形几何构型程度的合适工具。结构、理论和实验磁性数据表明,扭曲程度越高,铁磁耦合越强。