首页> 外文期刊>Indian journal of chemistry >Preparation, structural and magnetic characterization of trinuclear and one-dimensional cyanide-bridged Co(III)-Cu(II) complexes
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Preparation, structural and magnetic characterization of trinuclear and one-dimensional cyanide-bridged Co(III)-Cu(II) complexes

机译:三核和一维氰化物 - 桥接CO(III)-Cu(II)复合物的制备,结构和磁性表征

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By employing two trans-dicyanocobolt(III) building blocks K[Co(bpb)(CN)2] (bpb2- = 1,2-bis(pyridine-2-carboxamido)benzenate), K[Co(bpmb)(CN)2] (bpmb2- = 1,2-bis(pyridine-2-carboxamido)-4-methyl-benzenate) and one 14-membered macrocycle Cu(II) compound as assembling segment, two cyanide-bridged CoIII-CuII complexes {{[Cu(cyclam)][Co(bpb)(CN)2]}ClO4}n·nCH3OH·nH2O (1) and {[Cu(cyclam)][Co(bpmb)(CN)2]2}·4H2O (2) (cyclam = 1,4,8,11-tetraazacyclotetradecane) have been successfully prepared and characterized by elemental analysis, IR spectroscopy and X-ray structure determination. Single X-ray diffraction analysis shows that complex 1 can be structurally characterized as one-dimensional cationic single chain consisting of alternating units of [Cu(cyclam)]2+ and [Co(bpb)(CN)2]- with free ClO4- as balanced anion, while complex 2 presents cyanide-bridged neutral trinuclear bimetallic structure containing Co2Cu core, giving clear information that the substitute group on the cyanide precursor has obvious influence on the structure type of the target compound. Investigation over magnetic properties of complex 1 reveals the weak antiferromagnetic coupling between the neighboring Cu(II) ions through the diamagnetic cyanide building block.
机译:通过使用两种反式二氰基螺旋(III)构建块K [CO(BPB)(CN)2](BPB2- = 1,2-双(吡啶-2-羧酰胺)苯并酸),K [CO(BPMB)(CN) 2](BPMB2- = 1,2-双(吡啶-2-羧酰胺)-4-甲基苯甲酸酯)和一个14元大环Cu(II)化合物作为组装段,两种氰化物桥接COIII-CUII复合物{{ [Cu(CyclaM)] [Co(BPB)(CN)2]} ClO4} N·NCH3OH·NH 2 O(1)和{[Cu( - BPMB)] [CO(BPMB)(CN)2] 2}·4H2O( 2)(Cyclam = 1,4,8,11-11-四氮杂环丁二烷)已经成功制备,其特征是通过元素分析,IR光谱和X射线结构测定。单X射线衍射分析表明,复合物1可以在结构上表征为一维阳离子单链,其由[Cu(CyclaM)] 2+和[Co(BPB)(CN)2]的交替单元组成 - 具有游离的CLO4-作为平衡阴离子,虽然复合体2显示含有CO 2Cu核心的氰基桥桥中性三核双金属结构,但氰化物前体上的替代组对靶化合物的结构类型的影响有明显的信息。复合物1的磁性性质的研究揭示了通过二磁性氰化物构建块的相邻Cu(II)离子之间的弱反铁磁性耦合。

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