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首页> 外文期刊>Inorganic Chemistry: A Research Journal that Includes Bioinorganic, Catalytic, Organometallic, Solid-State, and Synthetic Chemistry and Reaction Dynamics >Versatile Coordination Mode of a New Pyridine-Based Ditopic Ligand with Transition Metals: From Regular Pyridine to Alkyne and Alkenyl Bindings and Indolizinium Formation
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Versatile Coordination Mode of a New Pyridine-Based Ditopic Ligand with Transition Metals: From Regular Pyridine to Alkyne and Alkenyl Bindings and Indolizinium Formation

机译:一种新型的基于吡啶的过渡金属配位基配体的多功能配位模式:从规则的吡啶到炔烃和烯基结合以及吲哚鎓的形成

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The new BPMPB ligand, namely, bis[1-bis(2-pyridylmethyl),1 (pyridyl)]butyne, can be very easily obtained as a side product in the known reaction of picolyl chloride and sodium acetylide (which major product is the known terminal alkyne-substituted tripod). This symmetrical ligand contains two identical coordination sites with two methylenepyridines and one pyridyl group on each side, linked by an alkyne function providing a semirigid segment. Together with the molecular structure of the ligand which is reported, we describe the preparation of complexes with Fe(II)Cl-2, Co(II)Cl-2, Cu(I)Cl, and Zn(II)Cl-2 salts. All complexes have been characterized by X-ray diffraction studies as well as by standard spectroscopic techniques. The striking point in this work is the diversity of the structures that are obtained. Co(II) and Zn(II) provide isostructural dinuclear complexes in which both coordination sites are occupied within a tetrahedral symmetry. The Cu(I) complex is also a dinuclear compound, but in that case, the copper atom is coordinated to the alkyne moiety, two pyridines, and a bridging chloride. The C-13 NMR spectrum of the copper complex confirms that the metal center is coordinated to the alkyne in solution. The coordination of Ni(II) results in the formation of a mononuclear complex in which a pyridine has fused with the alkyne moiety to generate an indolizinium group; the structure of the corresponding alkenyl complex is reported. Finally, the addition of FeCl2 to the ligand results in the formation of a mononuclear complex with a free, noncoordinated indolizinium. The sequence developed in the present work illustrates the possibility for the metal centers to adopt various coordination modes which may be relevant to the conversion of an alkyne and a pyridyl unit into indolizinium.
机译:新的BPMPB配体,即双[1-双(2-吡啶基甲基),1(吡啶基)]丁炔,可以很容易地在已知的甲基吡啶氯和乙炔酸钠的反应中作为副产物获得(主要产物是已知的末端炔烃取代的三脚架)。这种对称的配体包含两个相同的配位点,每侧分别具有两个亚甲基吡啶和一个吡啶基,并通过炔烃官能团连接,从而提供半刚性链段。连同已报道的配体的分子结构,我们描述了与Fe(II)Cl-2,Co(II)Cl-2,Cu(I)Cl和Zn(II)Cl-2盐的配合物的制备。所有配合物均已通过X射线衍射研究以及标准光谱技术进行了表征。这项工作的重点是获得的结构的多样性。 Co(II)和Zn(II)提供同构双核络合物,其中两个配位位点都占据四面体对称性。 Cu(I)络合物也是双核化合物,但在那种情况下,铜原子与炔基部分,两个吡啶和桥连氯化物配位。铜配合物的C-13 NMR光谱证实,金属中心与溶液中的炔烃配位。 Ni(II)的配位导致形成单核络合物,其中吡啶与炔基部分稠合以生成吲哚鎓基团;报告了相应烯基配合物的结构。最后,将FeCl 2添加到配体中导致形成具有游离,未配位的吲哚的单核络合物。本工作中开发的顺序说明了金属中心采用各种配位模式的可能性,这些配位模式可能与炔烃和吡啶基单元向吲哚鎓的转化有关。

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