首页> 外文期刊>Inorganic Chemistry: A Research Journal that Includes Bioinorganic, Catalytic, Organometallic, Solid-State, and Synthetic Chemistry and Reaction Dynamics >Syntheses, structures, and magnetic properties of three one-dimensional end-to-end azide/cyanate-bridged copper(II) compounds exhibiting ferromagnetic interaction: New type of solid state isomerism
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Syntheses, structures, and magnetic properties of three one-dimensional end-to-end azide/cyanate-bridged copper(II) compounds exhibiting ferromagnetic interaction: New type of solid state isomerism

机译:表现出铁磁相互作用的三种一维端到端叠氮化物/氰酸盐桥联的铜(II)化合物的合成,结构和磁性质:新型的固态异构体

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The work in this paper presents the syntheses, structures, and magnetic properties of three end-to-end (EE) azide/cyanate-bridged copper(II) compounds [CuIIL1(μ1,3-NCO)]n?2nH 2O (1), [CuIIL1(μ1,3-N 3)]n?2nH2O (2), and [CuIIL 2(μ1,3-N3)]n (3), where the ligands used to achieve these species, HL1 and HL2, are the tridentate Schiff base ligands obtained from [1 + 1] condensations of salicylaldehyde with 4-(2-aminoethyl)-morpholine and 3-methoxy salicylaldehyde with 1-(2-aminoethyl)-piperidine, respectively. Compounds 1 and 2 crystallize in the monoclinic P21/c space group, while compound 3 crystallizes in the orthorhombic Pbca space group. The metal center in 1-3 is in all cases pentacoordinated. Three coordination positions of the metal center in 1, 2, or 3 are satisfied by the phenoxo oxygen atom, imine nitrogen atom, and morpholine (for 1 and 2) or piperidine (for 3) nitrogen atom of one deprotonated ligand, [L1]- or [L2]-. The remaining two coordination positions are satisfied by two nitrogen atoms of two end-to-end bridging azide ligands for 2 and 3 and one nitrogen atom and one oxygen atom of two end-to-end bridging cyanate ligands for 1. The coordination geometry of the metal ion is distorted square pyramidal in which one EE azide/cyanate occupies the apical position. Variable-temperature (2-300 K) magnetic susceptibilities of 1-3 have been measured under magnetic fields of 0.05 (from 2 to 30 K) and 1.0 T (from 30 to 300 K). The simulation reveals a ferromagnetic interaction in all three compounds with J values of +0.19 ± 0.01, +0.79 ± 0.01, and +1.25 ± 0.007 cm-1 for 1, 2, and 3, respectively. Compound 1 is the sole example of a ferromagnetically coupled EE cyanate-bridged 1-D copper(II) system. In addition, a rare example of supramolecular isomerism and a nice example of magnetic isomerism have been observed and most interestingly a new type of solid state isomerism has emerged as a result of the comparison of the structure and magnetic properties of 2 with a previously published compound (2A) having the same composition and even the same crystal system and space group (New J. Chem.2001, 25, 1203-1207).
机译:本文的工作介绍了三种端对端(EE)叠氮化物/氰酸酯桥联的铜(II)化合物[CuIIL1(μ1,3-NCO)n?2nH 2O(1)的合成,结构和磁性能。 ),[CuIIL1(μ1,3-N3)] n?2nH2O(2)和[CuIIL 2(μ1,3-N3)] n(3),其中用于实现这些物种的配体HL1和HL2,是分别从水杨醛与4-(2-氨基乙基)-吗啉和3-甲氧基水杨醛与1-(2-氨基乙基)-哌啶的[1 + 1]缩合中获得的三齿席夫碱配体。化合物1和2在单斜晶P21 / c空间群中结晶,而化合物3在正交晶的Pbca空间群中结晶。 1-3中的金属中心在所有情况下都是五坐标的。苯氧基氧原子,亚胺氮原子和一个去质子化配体[L1]的吗啉(对于1和2)或哌啶(对于3)氮原子满足金属中心在1、2或3中的三个配位位置。 -或[L2]-。其余两个配位位置由2和3的两个端到端桥接叠氮化物配体的两个氮原子和1的两个端到端桥接氰酸盐配体的一个氮原子和一个氧原子满足。金属离子是扭曲的方形锥体,其中一种EE叠氮化物/氰酸盐占据顶部位置。在0.05(2至30 K)和1.0 T(30至300 K)的磁场下测得的1-3变温(2-300 K)磁化率。该模拟揭示了在所有三种化合物中,1、2和3的J值分别为+0.19±0.01,+ 0.79±0.01和+1.25±0.007 cm-1的铁磁相互作用。化合物1是铁磁耦合EE氰酸酯桥联的1-D铜(II)系统的唯一示例。此外,观察到了一个超分子异构现象的罕见例子和一个磁性异构现象的很好的例子,最有趣的是,通过比较2与先前发表的化合物的结构和磁性,出现了一种新型的固态异构现象。 (2A)具有相同的组成,甚至具有相同的晶体系统和空间群(New J. Chem.2001,25,1203-1207)。

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