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A study of novel cobalt(II) octaazamacrocyclic complexes with aminocarboxylates or their derivatives

机译:具有氨基羧酸盐或其衍生物的新型钴(II)八氮杂大环配合物的研究

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Four new air-stable mixed-ligand Co(II) complexes having the general formula [Co_2(Y)tpmc]Z_3·q(H_2O/CH_3CN) (HY = N-methylglycine/N,N-dime-thylglycine, Z = BF_4~- ,qH_2O = 4 or 3; HY = S-norvaline/S-valine Z = ClO_4~-, qCH_3CN = 0.5; qH_2O = 0.5; tpmc = N,N,'N"-tetrakis(2-pyridylmethyl)--1,4,8,11-tetraazacyclotetradecane) were prepared. The composition, some physical and chemical properties and their tentative geometries were evaluated based on elemental analysis (C, H, N), conductometric and magnetic measurements, spectroscopic data (UV/Vis, IR) and cyclic voltammetry. The data were compared with earlier described analogous complexes containing the macro-cyclic ligand and aliphatic aminocarboxylates. It is assumed that all complexes are binuclear with an exo coordination mode of the octaazamacrocyclic pendant ligand in the boat conformation. In addition, two -N-(CH_2)_2-N- portions of the cyclam ring within the tpmc ligand and Co(II) ions in the high-spin state are most probably bridged via oxygen atoms from the anion of the aminocar-boxylate/derivatives, whereas nitrogen atoms rest uncoordinated. In all cases, a combined chelate-bridged coordination is proposed as the most probable. The complexes were electrochemically stable in the potential range -1.0 to 1.0 V. They were also preliminary assayed toward some microorganisms together with the ligands, starting simple salts and solvents as test substances. In some cases, certain antimicrobial activity of the complexes was detected.
机译:四种新的具有通式[Co_2(Y)tpmc] Z_3·q(H_2O / CH_3CN)的空气稳定混合配体Co(II)配合物(HY = N-甲基甘氨酸/ N,N-二甲基-乙基甘氨酸,Z = BF_4 〜-,qH_2O = 4或3; HY = S-正缬氨酸/ S-缬氨酸Z = ClO_4〜-,qCH_3CN = 0.5; qH_2O = 0.5; tpmc = N,N,'N“-四(2-吡啶基甲基)-制备了1,4,8,11-四氮杂环十四烷),根据元素分析(C,H,N),电导和磁测量,光谱数据(UV / Vis)评估了组成,一些理化性质及其暂定几何形状(IR,循环伏安法),并将数据与先前描述的包含大环配体和脂肪族氨基羧酸盐的类似物进行比较,假定所有配合物均为双核,且船形中的八氮杂大环侧链配体具有exo配位模式。另外,在tpmc配体中的环蛋白环的两个-N-(CH_2)_2-N-部分和高自旋态的Co(II)离子很可能是桥通过氨基羧酸/衍生物的阴离子中的氧原子而形成,而氮原子则处于未配位状态。在所有情况下,结合螯合物桥联的协调被认为是最有可能的。该配合物在-1.0至1.0 V的电位范围内具有电化学稳定性。还对它们与配体,起始的简单盐和溶剂作为测试物质一起对某些微生物进行了初步分析。在某些情况下,检测到复合物的某些抗菌活性。

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