首页> 外文期刊>Inorganica Chimica Acta >Syntheses, structures and magnetic properties of two copper(II) tricyanomethanide complexes with 2,2'-bipyrimidine as bridging ligands
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Syntheses, structures and magnetic properties of two copper(II) tricyanomethanide complexes with 2,2'-bipyrimidine as bridging ligands

机译:两种以2,2'-联嘧啶为桥联配体的三氰胺铜(II)铜(II)配合物的合成,结构和磁性

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摘要

Two copper(II) tricyanomethanide (tcm) complexes with 2,2'-bipyrimidine (bpym) as co-ligands Cu_4(bpym)_5(tcm)_8 _ 2H_20 (1) and [Cu_2(bpym)_2(tcm)_4 _ H_2O]_n (2) have been synthesized, and structurally and magnetically characterized. Compound 1 displays a tetranuclear structure, in which each middle copper(II) atom is coordinated by two bridging bpym molecules and two terminal tcm ligands to form a tetragonal bipyramidal geometry, while each side copper(II) atom is surrounded by one bridging bpym, one terminal bpym, one terminal bonded tcm and one terminal weakly coordinated tcm ligands to give a square bipyramidal geometry. In 1 the four neighbouring copper(II) atoms are joined to each other by the bpym molecules, which leads to the formation of a tetranuclear structure. Compound 2 features an infinite chain structure, in which two slightly different chains exist. In each chain the copper(II) atom is bonded to two bridging bpym molecules and two terminal tcm ligands to form a tetragonal bipyramidal geometry, the adjacent copper(II) atoms are linked each other by the bpym ligands to define an infinite chain structure. In 2 the distances between two neighbouring copper(II) atoms in one chain are different. Moreover these distances in one chain are also different from those of the other chain. Magnetic susceptibility measurements for the two complexes in the temperature range 2-300 K reveal the occurrence of significant antiferromagnetic interactions for 1 (J_i = -20.42 cm~(-1), J_2 = -5.29 cm~(-1) and g= 2.22) and 2 (T__50 K, 0 = -20.00 K, C = 0.86 cm~3 mol~(-1) K), respectively.
机译:与2,2'-联嘧啶(bpym)作为共配体的两个铜(II)三氰胺铜(tcm)配合物Cu_4(bpym)_5(tcm)_8 _ 2H_20(1)和[Cu_2(bpym)_2(tcm)_4 _ H_2O] _n(2)已合成,并在结构和磁学上进行了表征。化合物1显示四核结构,其中每个中间铜(II)原子由两个桥联bpym分子和两个末端tcm配体配位,形成一个四方双锥体的几何形状,而每个侧面铜(II)原子被一个桥联bpym包围,一个末端bpym,一个末端结合的tcm和一个末端弱配位的tcm配体形成正方形双锥体的几何形状。在1中,四个相邻的铜(II)原子通过bpym分子彼此连接,这导致形成四核结构。化合物2具有无限的链结构,其中存在两个略有不同的链。在每条链中,铜(II)原子与两个桥接bpym分子和两个末端tcm配体键合以形成四方双锥体几何形状,相邻的铜(II)原子通过bpym配体彼此连接以定义无限链结构。在2中,一条链中两个相邻的铜(II)原子之间的距离不同。此外,一条链中的这些距离也不同于另一条链中的距离。在2-300 K的温度范围内对这两种配合物的磁化率测量表明,对于1(J_i = -20.42 cm〜(-1),J_2 = -5.29 cm〜(-1)和g = 2.22,存在明显的反铁磁相互作用)和2(T__50 K,0 = -20.00 K,C = 0.86 cm〜3 mol〜(-1)K)。

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