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首页> 外文期刊>Crystal growth & design >Cd(II) coordination architectures with mixed ligands of 3-(2-pyridyl)pyrazole and pendant carboxylate ligands bearing different aromatic skeletons: Syntheses, crystal structures, wand emission properties
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Cd(II) coordination architectures with mixed ligands of 3-(2-pyridyl)pyrazole and pendant carboxylate ligands bearing different aromatic skeletons: Syntheses, crystal structures, wand emission properties

机译:具有3-(2-吡啶基)吡唑的混合配体和带有不同芳族骨架的羧酸酯侧基配体的混合Cd(II)配位结构:合成,晶体结构,棒发射特性

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摘要

To investigate the influences of the geometries of pendant carboxylate ligands and some intramolecular/intermolecular weak interactions on the structures of transition metal complexes, five new Cd(II) complexes, Cd-2(HL1)(2)(L-2)(4) (1), Cd-2(HL1)(2)(L-3)(4) (2), {[Cd-2(HL1)(L-4)(4)(H2O)(2)](H2O)}(infinity) (3), [Cd(L-1)(L-5)](infinity) (4), and Cd-2(L-1)(2)(HL1)(2)(L-4)(2) (5) (HL1 = 3-(2-pyridyl)pyrazole, HL2 = benzoic acid, HL3 = naphthalene-carboxylic acid, HL4 = 9-anthracene-carboxylic acid, and HL5 = isonicotinic acid), have been synthesized and structurally characterized by elemental analyses, IR spectroscopy, and single-crystal X-ray diffraction analyses. 1 and 2 have a similar dinuclear structure, which is further assembled to form a one-dimensional (1D) chain by pi(...)pi stacking and/or hydrogen-bonding interactions. 3 possesses a 1D chain structure that is further interlinked via intermolecular pi(...)pi stacking, resulting in a two-dimensional (2D) network, while 4 has a 2D (4,4) network with channel dimension of 9.34 x 9.34 angstrom(2) and further assembles into a three-dimensional (3D) network by interlayer pi(...)pi stacking. 5 also possesses a dinuclear structure and then forms a 2D network through intermolecular pi(...)pi stacking and C-(HO)-O-... hydrogen-bonding interactions. Interestingly, 3 and 5 were obtained simultaneously in the same reaction system. The structural differences of those complexes show the influences of the geometries of the pendant carboxylate ligands. This result also shows that intramolecular/intermolecular weak interactions play important roles in the formation of coordination architectures, especially in the aspect of linking multinuclear discrete subunits or low-dimensional entities into high-dimensional supramolecular frameworks. In addition, complexes 1, 2, and 4 exhibit blue emission in the solid state at room temperature.
机译:研究侧挂羧酸盐配体的几何形状和一些分子内/分子间弱相互作用对过渡金属配合物,五种新的Cd(II)配合物,Cd-2(HL1)(2)(L-2)(4)的结构的影响)(1),Cd-2(HL1)(2)(L-3)(4)(2),{[Cd-2(HL1)(L-4)(4)(H2O)(2)]( H2O)}(无穷大)(3),[Cd(L-1)(L-5)](无穷大)(4)和Cd-2(L-1)(2)(HL1)(2)(L -4)(2)(5)(HL1 = 3-(2-吡啶基)吡唑,HL2 =苯甲酸,HL3 =萘甲酸,HL4 = 9-蒽羧酸,HL5 =异烟酸)通过元素分析,IR光谱和单晶X射线衍射分析合成并在结构上进行了表征。图1和图2具有相似的双核结构,其通过pi(...)pi堆积和/或氢键相互作用进一步组装形成一维(1D)链。 3具有一维链结构,该结构通过分子间pi(...)pi堆叠进一步互连,从而形成二维(2D)网络,而4具有2D(4,4)网络,通道尺寸为9.34 x 9.34埃(2),并通过层间pi(...)pi堆叠进一步组装成三维(3D)网络。 5还具有双核结构,然后通过分子间pi(...)pi堆积和C-(HO)-O -...氢键相互作用形成2D网络。有趣的是,在同一反应体系中同时获得3和5。这些配合物的结构差异显示了侧链羧酸盐配体的几何形状的影响。该结果还表明,分子内/分子间的弱相互作用在配位结构的形成中起重要作用,尤其是在将多核离散亚基或低维实体连接到高维超分子框架方面。另外,配合物1、2和4在室温下呈固态发射蓝光。

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