Wu Hua, Dong Xian-Wu, Ma Jian-Fang, Liu Hai-Yan, Yang Jin, Bai Hong-Ye
Key Lab of Polyoxometalate Science, Department of Chemistry, Northeast Normal University, Changchun, 130024, People's Republic of China.
Dalton Trans. 2009 May 7(17):3162-74. doi: 10.1039/b814942a. Epub 2009 Mar 25.
In this article, a series of mixed-ligand Ag(i) coordination polymers, namely, Ag(L1)H(2)O (), Ag(2)(hmt)(2)(L1)(2) (), [Ag(HL2)]H(2)O (), [Ag(L2)(biim)][Ag(biim)] (), [K(5)(L3)(2)][Ag(H(2)O)(2)] (), [Ag(2)(L3)(3-iso)][Ag(3-iso)]5H(2)O (), [Ag(3)(L3)(bipy)(3)(H(2)O)]6H(2)O (), [Ag(3)(L3)(biim)(3)]H(2)O (), and [Ag(3)(L3)(hmt)(2)(H(2)O)(3)]H(2)O () (where hmt = hexamethylenetetramine, bipy = 4,4'-bipyridine, biim = 1,1'-(1,4-butanediyl)-bis(imidazole), 3-iso = 3-methylisoquinoline, L1 = 2,5-dichloro-4-amino-benzenesulfonate anion, L2 = 2-nitroso-1-naphthol-4-sulfonate anion and L3 = 4-hydroxy-5-nitro-1,3-benzenedisulfonate anion), have been synthesized by varying the anionic sulfonate-containing ligands and nitrogen-containing secondary ligands. Compounds and were synthesized through their parent compounds and , respectively, while were obtained by their parent compound . Ag(i) centers of are linked by L1 anions to generate a 1D polymeric chain, while Ag(i) centers of are bridged by hmt ligands to form a 2D polymeric layer. In , Ag(i) centers are connected by L2 anions to yield a 1D double chain, whereas Ag(i) centers in are joined by biim ligands and L2 anions, generating an unusual anionic chain and a cationic chain, respectively. In , Ag(i) centers are coordinated by water molecules, and K(i) cations are coordinated by L3 anions to form a pillared layered structure with inorganic layers and organic pillars. In , Ag(i) centers are coordinated by 3-iso ligands and L3 anions to generate a discrete molecular structure. In , bipy ligands bridge Ag(i) centers to give Ag-bipy chains, which are further linked by L3 anions to produce a 2D polymeric layer. In , Ag(i) centers are bridged by biim ligands to generate a 1D polymeric chain. In , the hmt ligands connect Ag(i) centers to give a binodal (3,4)-connected net with (6(3))(6(5).8)(2) topology. These results indicate that anionic sulfonate-containing ligands and the nitrogen-containing secondary ligands play important roles in the structural formation of the Ag(i) complexes. Additionally, the luminescent properties, elemental analyses and IR spectroscopy of these compounds were also studied.
在本文中,通过改变含磺酸根阴离子配体和含氮辅助配体,合成了一系列混合配体Ag(I)配位聚合物,即Ag(L1)H₂O ()、Ag₂(hmt)₂(L1)₂ ()、[Ag(HL2)]H₂O ()、[Ag(L2)(biim)][Ag(biim)] ()、[K₅(L3)₂][Ag(H₂O)₂] ()、[Ag₂(L3)(3 - iso)][Ag(3 - iso)]5H₂O ()、[Ag₃(L3)(bipy)₃(H₂O)]6H₂O ()、[Ag₃(L3)(biim)₃]H₂O ()和[Ag₃(L3)(hmt)₂(H₂O)₃]H₂O ()(其中hmt = 六亚甲基四胺,bipy = 4,4'-联吡啶,biim = 1,1'-(1,4 - 丁二基)-双(咪唑),3 - iso = 3 - 甲基异喹啉,L1 = 2,5 - 二氯 - 4 - 氨基苯磺酸根阴离子,L2 = 2 - 亚硝基 - 1 - 萘酚 - 4 - 磺酸根阴离子,L3 = 4 - 羟基 - 5 - 硝基 - 1,3 - 苯二磺酸根阴离子)。化合物 和 分别通过它们的母体化合物 和 合成,而 则由它们的母体化合物 得到。 的Ag(I)中心通过L1阴离子相连形成一维聚合物链,而 的Ag(I)中心由hmt配体桥连形成二维聚合物层。在 中,Ag(I)中心通过L2阴离子连接生成一维双链,而 中的Ag(I)中心分别由biim配体和L2阴离子连接,分别生成一条不寻常的阴离子链和一条阳离子链。在 中,Ag(I)中心由水分子配位,K(I)阳离子由L3阴离子配位形成具有无机层和有机支柱的柱状层状结构。在 中,Ag(I)中心由3 - iso配体和L3阴离子配位生成离散分子结构。在 中,bipy配体桥连Ag(I)中心形成Ag - bipy链,这些链进一步由L3阴离子连接形成二维聚合物层。在 中,Ag(I)中心由biim配体桥连生成一维聚合物链。在 中,hmt配体连接Ag(I)中心形成具有(6(3))(6(5).8)²拓扑结构的双节点(3,4)连接网络。这些结果表明含磺酸根阴离子配体和含氮辅助配体在Ag(I)配合物的结构形成中起重要作用。此外,还研究了这些化合物的发光性质、元素分析和红外光谱。