首页> 外文期刊>Polyhedron: The International Journal for Inorganic and Organometallic Chemistry >Synthesis and structural characterizations of mononuclear zinc complexes with an unprecedented terminal bidentate coordination mode of the flexible 1,1,3,3-tetrakis(3,5-dimethyl-1-pyrazolyl)propane ligand
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Synthesis and structural characterizations of mononuclear zinc complexes with an unprecedented terminal bidentate coordination mode of the flexible 1,1,3,3-tetrakis(3,5-dimethyl-1-pyrazolyl)propane ligand

机译:1,1,3,3-四(3,5-二甲基-1-吡唑基)丙烷配体具有前所未有的末端双齿配位模式的单核锌配合物的合成和结构表征

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摘要

Four new complexes, [Zn(tdmpp)_2H_2O](ClO_4)_2·H_2O (1), [Zn(NCS)Cl(tdmpp)] (2), [ZnI2(tdmpp)] (3) and [ZnCl2(tdmpp)] (4), were prepared and structurally characterized. The 1,1,3,3-tetrakis(3,5-dimethyl-1- pyrazolyl)propane (tdmpp) ligand in the above compounds represents the first example of a flexible tetradentate nitrogen donor ligand in which the ligand is coordinated to the metal center as a terminal chelating ligand. The perchlorate ion in 1 acts as an uncoordinated anion, while in 2 the SCN and chlorine ligands and in 3 the iodine ligand participate in the coordination sphere of the metal center. The coordination ability of these anions and significant effects of non-covalent C-H···p and C-H···X (X = O, Cl and I) interactions play a major role in the crystal packing of these compounds. In 1, the zinc atom adopts a distorted trigonal bipyramidal geometry and the [Zn(tdmpp)_2H_2O]~(2+) cations are linked by C-H···O hydrogen bonds to give a 1-D chain structure. In the structures of 2 and 3, the mononuclear neutral molecules form a 1-D chain structure along the b-axis through C-H···Cl and C-H···hydrogen bonds, respectively. These chains are linked by intermolecular C-H···π interactions to generate a three-dimensional network. Crystals of compound 4 were not suitable for X-ray diffraction studies and therefore its structure could only be investigated in the solid state by infrared spectroscopy and elemental analysis.
机译:四个新的配合物[Zn(tdmpp)_2H_2O](ClO_4)_2·H_2O(1),[Zn(NCS)Cl(tdmpp)](2),[ZnI2(tdmpp)](3)和[ZnCl2(tdmpp)制备(4),并对其结构进行表征。上述化合物中的1,1,3,3-四(3,5-二甲基-1-吡唑基)丙烷(tdmpp)配体代表柔性四齿氮供体配体的第一个实例,其中该配体与金属配位中心作为末端螯合配体。 1中的高氯酸根离子充当未配位的阴离子,而2中的SCN和氯配体以及3中的碘配体参与金属中心的配位球。这些阴离子的配位能力以及非共价C-H··p和C-H···X(X = O,Cl和I)相互作用的显著作用在这些化合物的晶体堆积中起主要作用。在图1中,锌原子具有扭曲的三角双锥体几何形状,并且[Zn(tdmpp)_2H_2O]〜(2+)阳离子通过C-H··O氢键连接形成一维链结构。在2和3的结构中,单核中性分子分别通过C-H··Cl和C-H···氢键沿b轴形成1-D链结构。这些链通过分子间C-H··π相互作用连接在一起,生成三维网络。化合物4的晶体不适合X射线衍射研究,因此只能通过红外光谱和元素分析研究固态的结构。

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