Department of Chemistry, Bohai University, Jinzhou, 121000, PR China.
Dalton Trans. 2013 Jun 21;42(23):8375-86. doi: 10.1039/c3dt50202c. Epub 2013 Apr 26.
A series of multifunctional Cu(II) metal-organic coordination polymers based on three flexible bis-pyridyl-bis-amide ligands and four aromatic dicarboxylates, namely [Cu(3-dpye)(3-NPA)(H2O)]·3H2O (1), [Cu(3-dpye)0.5(5-AIP)(H2O)] (2), [Cu(3-dpye)(1,3-BDC)]·3H2O (3), [Cu3(3-dpye)(1,2-BDC)2(μ2-OH)2] (4), [Cu3(3-dpyb)(1,2-BDC)2(μ2-OH)2] (5), [Cu(3-dpyh)0.5(1,2-BDC)]·H2O (6), [Cu(3-dpyh)0.5(5-AIP)(H2O)] (7) [3-dpye = N,N'-bis(3-pyridinecarboxamide)-1,2-ethane, 3-dpyb = N,N'-bis(3-pyridinecarboxamide)-1,4-butane, 3-dpyh = N,N'-bis(3-pyridinecarboxamide)-1,6-hexane, 3-H2NPA = 3-nitrophthalic acid, 5-H2AIP = 5-aminoisophthalic acid, 1,3-H2BDC = 1,3-benzenedicarboxylic acid, 1,2-H2BDC = 1,2-benzenedicarboxylic acid], have been hydrothermally synthesized and structurally characterized by elemental analyses, IR, PXRD, TG and single crystal X-ray diffraction. X-ray analyses reveal that the seven Cu(II) complexes show three kinds of different 2D layer structures (for complexes 1, 2, 3, 6 and 7) and a 3D coordination framework (for complexes 4 and 5), exhibiting the (4(4)·6(2)) topology for 1, (4(2)·6(3)·8)(4(2)·6) topology for isostructural complexes 2 and 7, (4(2)·6(7)·8)(4(2)·6) topology for complex 3, (3·4·5)2(3·4(2)·5·8(6))2(3(2)·8·9(2)·10)(4(2)·8(2)·10(2)) topology for isostructural complexes 4 and 5, and the (4(2)·6(3)·8)(4(2)·6) topology for complex 6, respectively. In complexes 1-7, the bis-pyridyl-bis-amide ligands adopt a μ2-bridging mode in 1, 2, 3, 6 and 7 (via ligation of two pyridyl nitrogen atoms) and a μ4-bridging coordination mode in 4 and 5 (via ligation of two pyridyl nitrogen atoms and two carbonyl oxygen atoms), which play an important role in determining the dimensionality of the title complexes. The aromatic dicarboxylates serve as a linker (for 1) and three-connected nodes (for 2-7) to bridge the adjacent Cu(II) ions, respectively, leading to the formation of various topological structures, which indicate both the substitute group and position of carboxyl group of the dicarboxylates play significant roles in the construction of the title complexes. The fluorescent, electrochemical and photocatalytic properties of complexes 1-7 have also been investigated.
基于三种柔性双吡啶-双酰胺配体和四种芳香族二羧酸,合成了一系列多功能的 Cu(II) 金属有机配位聚合物,即 [Cu(3-dpye)(3-NPA)(H2O)]·3H2O(1)、[Cu(3-dpye)0.5(5-AIP)(H2O)](2)、[Cu(3-dpye)(1,3-BDC)]·3H2O(3)、[Cu3(3-dpye)(1,2-BDC)2(μ2-OH)2](4)、[Cu3(3-dpyb)(1,2-BDC)2(μ2-OH)2](5)、[Cu(3-dpyh)0.5(1,2-BDC)]·H2O(6)、[Cu(3-dpyh)0.5(5-AIP)(H2O)](7)。[3-dpye = N,N'-双(3-吡啶甲酰胺)-1,2-乙烷、3-dpyb = N,N'-双(3-吡啶甲酰胺)-1,4-丁烷、3-dpyh = N,N'-双(3-吡啶甲酰胺)-1,6-己烷、3-H2NPA = 3-硝基邻苯二甲酸、5-H2AIP = 5-氨基异酞酸、1,3-H2BDC = 1,3-苯二甲酸、1,2-H2BDC = 1,2-苯二甲酸]。通过元素分析、IR、PXRD、TG 和单晶 X 射线衍射对这些配合物进行了水热合成和结构表征。X 射线分析表明,这七种 Cu(II) 配合物表现出三种不同的二维层状结构(对于配合物 1、2、3、6 和 7)和三维配位骨架(对于配合物 4 和 5),具有(4(4)·6(2))拓扑结构对于 1、(4(2)·6(3)·8)(4(2)·6)拓扑结构对于同构配合物 2 和 7、(4(2)·6(7)·8)(4(2)·6)拓扑结构对于配合物 3、(3·4·5)2(3·4(2)·5·8(6))2(3(2)·8·9(2)·10)(4(2)·8(2)·10(2))拓扑结构对于同构配合物 4 和 5,以及(4(2)·6(3)·8)(4(2)·6)拓扑结构对于配合物 6,分别。在配合物 1-7 中,双吡啶-双酰胺配体在 1、2、3、6 和 7 中采用 μ2-桥接模式(通过两个吡啶氮原子的配位)和 μ4-桥接配位模式在 4 和 5(通过两个吡啶氮原子和两个羰基氧原子的配位),这在确定标题配合物的维度方面起着重要作用。芳香族二羧酸分别作为连接体(对于 1)和三连接节点(对于 2-7),用于桥接相邻的 Cu(II) 离子,从而形成各种拓扑结构,这表明二羧酸的取代基和羧基位置在标题配合物的构建中都起着重要作用。还研究了配合物 1-7 的荧光、电化学和光催化性能。