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Alkali/alkaline earth metal and solvents-regulated construction of novel heterometallic coordination polymers based on a semirigid ligand and tetranuclear metal clusters

机译:碱/碱土金属和溶剂调节的新型基于半刚性配体和四核金属簇的杂金属配位聚合物

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Five novel three-dimensional (3D) heterometallic coordination polymers, [ZnCa(dcppa)(DMF)(2)](n) (1), [ZnCa(dcppa)(DMA)(2)](n) (2), [ZnBa(dcppa)(DMF)(2)](n) (3), [ZnBa(dcppa)(DMA)(2)](n) (4), and [ZnNa(dcppa) (DMF)](n)center dot n(Me2NH2)center dot n(H2O)(2) (5) (Me2NH2+ = dimethylammonium cation; DMA = N,N-dimethylacetamide; DMF = N,N-dimethylformamide; H(4)dcppa = 3-(3',5'-dicarboxylphenoxy) phthalic acid), have been hydrothermally synthesized and structurally characterized with the aid of single-crystal X-ray diffraction. Complexes 1-5 are heterometallic Zn/M (M = Ca, Ba, Na) coordination polymers constructed from a semirigid H(4)dcppa ligand and tetranuclear metal clusters. Topological analyses show that 1/3/4 and 2/5 exhibit complicated 3D framework that could be simplified into binodal (3,6)-connected rtl nets and binodal (3,6)-connected flu nets, respectively. Unlike 1-4, 5 features a unique 3D anionic framework with Me2NH2+ cations occupying the voids. From the viewpoint of crystal structure diversity and comparison, our results further prove that the coordination modes of metal ions and ligands play indispensable roles in the construction of the final crystal structure. Moreover, the thermal stability and solid-state luminescence properties of 1-5 have also been investigated at room temperature. (C) 2014 Published by Elsevier B. V.
机译:五种新颖的三维(3D)杂金属配位聚合物[ZnCa(dcppa)(DMF)(2)] [n)(1),[ZnCa(dcppa)(DMA)(2)](n)(2), [ZnBa(dcppa)(DMF)(2)](n)(3),[ZnBa(dcppa)(DMA)(2)](n)(4)和[ZnNa(dcppa)(DMF)](n )中心点n(Me2NH2)中心点n(H2O)(2)(5)(Me2NH2 + =二甲基铵阳离子; DMA = N,N-二甲基乙酰胺; DMF = N,N-二甲基甲酰胺; H(4)dcppa = 3-( 3’,5’-二羧基苯氧基)邻苯二甲酸已被水热合成,并借助单晶X射线衍射对其结构进行了表征。配合物1-5是由半刚性H(4)dcppa配体和四核金属簇构成的杂金属Zn / M(M = Ca,Ba,Na)配位聚合物。拓扑分析表明,1/3/4和2/5展示了复杂的3D框架,可以将其简化为与Binodal(3,6)连接的rtl网络和与Binodal(3,6)连接的流感网络。与1-4不同,5具有独特的3D阴离子骨架,其中Me2NH2 +阳离子占据了空隙。从晶体结构多样性和比较的角度来看,我们的结果进一步证明金属离子和配体的配位模式在最终晶体结构的构建中起着不可或缺的作用。此外,还已经在室温下研究了1-5的热稳定性和固态发光性质。 (C)2014由Elsevier B.V.

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