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Synthesis, spectroscopy, thermal studies and supramolecular structures of two new alkali-earth 4-nitrobenzoate complexes containing coordinated imidazole

机译:两种新的含配位咪唑的碱土金属4-硝基苯甲酸酯配合物的合成,光谱学,热学研究和超分子结构

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摘要

The reaction of hydrated magnesium or calcium 4-nitrobenzoate (4-nba) generated in situ, with imidazole (Im) results in the formation of the complexes [Mg(H2O)2(Im)2(4-nba)2] 1 and [Ca(H2O)3(Im)(4-nba)2]·Im 2, which exhibit the same metal:4-nba:Im ratio but different degrees of hydration. Complex 1 crystallizes in the triclinic Pī space group and the Mg atom is located on an inversion centre, while 2 crystallizes in the monoclinic P21/c space group and all atoms are located in general positions. In 1 the Im ligands, which are trans to each other, are coordinated to Mg, while 2 contains coordinated as well as free Im. The monodentate 4-nba ligands are disposed trans to each other in 1, while they adopt a cis orientation in 2 resulting in different supramolecular structures. Complex 1 exhibits two types of H-bonding interactions namely O-H···O and N-H···O, while in 2 three varieties of H-bond, viz. O-H···O, N-H···O and O-H···N are observed. The Im ligand ligand functions as a bifurcated H-bond donor in 1 while the O atom of the nitro group functions as a H-bond acceptor. In contrast, the nitro group in 2 is not involved in any H-bonding interactions. The free Im in 2 functions as a bifurcated acceptor and forms an extended chain linking adjacent complex molecules. The chains thus formed are further cross-linked with the aid of H-donor bonds from both the free as well as the coordinated Im. Both 1 and 2 exhibit π-π stacking interactions. Complex 1 is thermally more stable as compared to 2, and both complexes can be dehydrated to the corresponding anhydrous complexes by heating at 140 and 100°C respectively. At elevated temperatures, both the complexes can be pyrolysed to the corresponding oxide. The anhydrous complexes can be rehydrated to obtain the starting hydrated materials.
机译:原位生成的水合4-硝基苯甲酸镁或4-硝基苯甲酸钙(4-nba)与咪唑(Im)的反应导致形成复合物[Mg(H2 O)2 (Im)2 (4-nba)2 ] 1和[Ca(H2 O)3 (Im)(4-nba)2 ]·Im 2表现出相同的金属:4-nba:Im比,但水化程度不同。配合物1在三斜Pī空间群中结晶,而Mg原子位于反型中心,而化合物2在单斜P21 / c空间群中结晶,所有原子均位于一般位置。在1中,彼此反式的Im配体与Mg配位,而在2中包含配位的以及游离的Im。单齿4-nba配体以1彼此反位排列,而它们以2的顺式取向形成不同的超分子结构。配合物1表现出两种类型的H键相互作用,即O-H··O和N-H···O,而在2种三种类型的H键中,即。观察到O-H··O,N-H···O和O-H···N。在1中,Im配体配体充当分支的H键供体,而硝基的O原子充当H键受体。相反,2中的硝基不参与任何氢键相互作用。游离的Im in 2充当分叉的受体,并形成连接相邻复杂分子的延伸链。如此形成的链在自由和配位的Im的帮助下通过H-给体键进一步交联。 1和2都显示π-π堆积相互作用。与2相比,配合物1在热上更稳定,并且可以分别在140和100℃下加热将两种配合物脱水成相应的无水配合物。在升高的温度下,两种络合物均可热解成相应的氧化物。可以将无水配合物再水合以获得起始水合材料。

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