首页> 外文期刊>Dalton transactions: An international journal of inorganic chemistry >Versatile coordination modes of bis5-(2-pyridine- 2-yl)-1,2,4-triazole-3-ylalkanes in Cu(II) complexes
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Versatile coordination modes of bis5-(2-pyridine- 2-yl)-1,2,4-triazole-3-ylalkanes in Cu(II) complexes

机译:双5-(2-吡啶-2-基)-1,2,4-三唑-3-基烷烃在Cu(II)配合物中的多种配位模式

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摘要

Nine new mononuclear and polynuclear Cu(II) complexes Cu(H_2L~2)ClCl?3H_2O (1), Cu(H_2L~3)ClCl?H_2O (2), Cu(H_2L~4)ClCl?2.5H_2O (3), Cu_3(μ~3-L~1)_2(H_2O)_3(ClO_4)_2?H_2O (4), Cu_4(μ-HL~1)_4(ClO_4)_8?CH_3OH?5H_2O (5), Cu_2(HL~3)_2(ClO_4)_2?2H_2O (6a), Cu_2(μ-HL~3)_2(ClO_4)_2?H_2O (6b), Cu_2(μ-HL~3)(L~3)Cu(teta)(ClO_4)_3?2H_2O (7) and Cu_2(H_2L~3)2(ox)(ClO_4)_2?2H_2O?2MeOH (8) containing 5-(2-pyridine-2-yl)-1,2,4-triazole-3-ylalkanes (H_2L~n, n = 1–4) in combination with other ligands, such as chlorido, aqua, triethylenetetramine (teta) and/ or oxalato (ox~(2?)), were synthesized and characterized by various techniques such as elemental analysis, FTIR, NMR and UV-Vis spectroscopy. X-ray structures of H_2L~3 and H_2L~4 as well as complexes 1–8 were determined. The X-ray structures revealed that relatively small composition and structural changes in the H_2L~n ligands have a substantial impact on the coordination geometries of the complexes themselves as well as on their resulting magnetic properties. It has been found that the geometries of the complexes vary from square-pyramidal to trigonal-bipyramidal (with τ ranging from 0.00 to 0.96) and, moreover, that the trigonal bipyramidal geometry becomes more preferable with the increase in the length of the polymethylene chain within the corresponding H_2L~n ligand. The magnetic properties of the polynuclear compounds 4, 5, 6, 7 and 8 were analysed using the spin Hamiltonian formalism, which revealed the presence of antiferromagnetic exchange in the polynuclear systems mediated by the title ligands. The significant effect of the geometric parameters on the Cu?Cu exchange interactions in the polynuclear complexes is discussed.
机译:9种新的单核和多核Cu(II)配合物[Cu(H_2L~2)Cl]Cl?3H_2O (1), [Cu(H_2L~3)Cl]Cl?H_2O (2), [Cu(H_2L~4)Cl]Cl?2.5H_2O (3), [Cu_3(μ~3-L~1)_2(H_2O)_3](ClO_4)_2?H_2O (4), [Cu_4(μ-HL~1)_4](ClO_4)_8?CH_3OH?5H_2O (5), [Cu_2(HL~3)_2](ClO_4)_2?2H_2O (6a), [Cu_2(μ-HL~3)_2](ClO_4)_2?H_2O (6b)、[Cu_2(μ-HL~3)(L~3)Cu(teta)](ClO_4)_3?2H_2O (7) 和 [Cu_2(H_2L~3)2(ox)](ClO_4)_2?2H_2O?2MeOH (8) 含有 [5-(2-吡啶-2-基)-1,2,4-三唑-3-基]烷烃 (H_2L~n, n = 1–4) 与其他配体(如氯拷、水、三乙烯四胺 (teta) 和/或草酸 (ox~(2?)) 的组合, 通过元素分析、FTIR、NMR和紫外-可见光谱等各种技术进行合成和表征。测定了H_2L~3和H_2L~4的X射线结构以及配合物1-8。X射线结构表明,H_2L~n配体中相对较小的组成和结构变化对配合物本身的配位几何形状及其产生的磁性有重大影响。已经发现,配合物的几何形状从方形锥体到三角双锥体(τ范围从0.00到0.96)不等,此外,随着相应H_2L~n配体内聚亚甲基链长度的增加,三角形双锥体几何形状变得更加优选。使用自旋哈密顿形式分析了多核化合物 4、5、6、7 和 8 的磁性,揭示了标题配体介导的多核系统中存在反铁磁交换。几何参数对铜的显著影响?讨论了多核配合物中的Cu交换相互作用。

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