首页> 外文期刊>Dalton transactions: An international journal of inorganic chemistry >Synthesis, crystal structures and magnetic properties of single and double cyanide-bridged bimetallic (Fe2CuII)-Cu-III zigzag chains
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Synthesis, crystal structures and magnetic properties of single and double cyanide-bridged bimetallic (Fe2CuII)-Cu-III zigzag chains

机译:单和双氰化物桥联双金属(Fe2CuII)-Cu-III之字形链的合成,晶体结构和磁性

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The bimetallic complexes [{Fe-III(phen)(CN)(4)}(2)Cu-II(H2O)(2)].4H(2)O (1), [{Fe-III(phen)(CN)(4)}(2)Cu-II].H2O (2) and [{Fe-III(bipy)(CN)(4)}(2)Cu-II].2H(2)O (3) and [{Fe-III(bipy)(CN)(4)}(2)Cu-II(H2O)(2)].4H(2)O (4) (phen=1,10-phenanthroline and bipy=2,2'-bipyridine) have been prepared and the structures of 1-3 determined by X-ray diffraction. The structure of 1 is made up of neutral cyanide-bridged Fe-III-Cu-II zigzag chains of formula [{Fe-III(phen)(CN)(4)}(2)Cu-II(H2O)(2)] and uncoordinated water molecules with the [Fe(phen)(CN)(4)](-) entity acting as a bis-monodentate bridging ligand toward two trans-diaquacopper(II) units through two of its four cyanide groups in cis positions. The structure of 2 can be viewed as the condensation of two chains of 1 connected through single cyanide-bridged Fe-III-Cu-II pairs after removal of the two axially coordinated water molecules of the copper atom. The structure of 3 is like that of 2, the main differences being the occurrence of bipy (phen in 2) and two (one in 2) crystallization water molecules. The crystals of 4 diffract poorly but the analysis of the limited set of diffraction data shows a chain structure like that of 1 the most important difference being the fact that elongation axis at the copper atom is defined by the two trans coordinated water molecules. 1 behaves as a ferromagnetic (Fe2CuII)-Cu-III trinuclear system. A metamagnetic-like behavior is observed for 2 and 3, the value of the critical field (H-c) being ca. 1100 (2) and 900 Oe (3). For H>H-c the ferromagnetic (Fe2CuII)-Cu-III chains exhibit frequency dependence of the out-of-phase ac susceptibility signal at T<4.0 K. The magnetic behavior of 4 corresponds to that of a ferromagnetically coupled chain of low spin iron(III) and copper(II) ions with frequency dependence of the out-of-phase susceptibility at T<3.0 K. Theoretical calculations using methods based on density functional theory (DFT) have been employed to analyze and substantiate the exchange pathways in this family of complexes.
机译:双金属配合物[{Fe-III(phen)(CN)(4)}(2)Cu-II(H2O)(2)]。4H(2)O(1),[{Fe-III(phen)( CN)(4)}(2)Cu-II] .H2O(2)和[{Fe-III(bipy)(CN)(4)}(2)Cu-II] .2H(2)O(3)和[{Fe-III(bipy)(CN)(4)}(2)Cu-II(H2O)(2)]。4H(2)O(4)(phen = 1,10-菲咯啉和bipy = 2制备了1,2′-联吡啶,并通过X射线衍射确定了1-3的结构。 1的结构由式[{Fe-III(phen)(CN)(4)}(2)Cu-II(H2O)(2)的中性氰化物桥联的Fe-III-Cu-II之字形链组成]和未配位的水分子,其中[Fe(phen)(CN)(4)](-)实体通过双氰基铜(II)单元中的两个氰化物基团中的两个在顺式位置作为双单齿桥接配体。 2的结构可以看作是在除去两个轴向配位的铜原子水分子后,通过单个氰化物桥联的Fe-III-Cu-II对连接的1的两条链的缩合。 3的结构类似于2的结构,主要区别是bipy(phen为2)和两个(one in 2)结晶水分子的出现。 4的晶体衍射差,但是对有限的一组衍射数据的分析显示出与1相似的链结构,最重要的区别是铜原子处的延伸轴由两个反式配位的水分子限定。 1表现为铁磁(Fe2CuII)-Cu-III三核系统。对于2和3观察到类似超磁的行为,临界场(H-c)的值为ca。 1100(2)和900 Oe(3)。对于H> Hc,铁磁(Fe2CuII)-Cu-III链在T <4.0 K时表现出异相磁化率信号的频率依赖性。4的磁行为对应于低自旋铁的铁磁耦合链的磁行为。 (III)和铜(II)离子在T <3.0 K时具有异相磁化率的频率依赖性。已使用基于密度泛函理论(DFT)的方法进行了理论计算,以分析和证实该过程中的交换路径。复杂的家庭。

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