Liu Ying-Ying, Ma Jian-Fang, Yang Jin, Su Zhong-Min
Key Lab for Polyoxometalate Science, Department of Chemistry, Northeast Normal University, Changchun 130024, People's Republic of China.
Inorg Chem. 2007 Apr 16;46(8):3027-37. doi: 10.1021/ic061575l. Epub 2007 Mar 15.
Six new coordination polymers, namely [Zn1.5(BTC)(L1)(H2O)2].1.5H2O (1), [Zn3(BTC)2(L2)3] (2), [Zn3(BTC)2(L3)1.5(H2O)].H2O (3), [Co6(BTC)4(L1)6(H2O)3].9H2O (4), [Co1.5(BTC)(L2)1.5].0.25H2O (5), and [Co4(BTC)2(L3)2(OH)2(H2O)].4.5H2O (6), where L1 = 1,2-bis(imidazol-1-ylmethyl)benzene, L2 = 1,3-bis(imidazol-1-ylmethyl)benzene, L3 = 1,1'-(1,4-butanediyl)bis(imidazole), and BTC = 1,3,5-benzenetricarboxylate anion, were synthesized under hydrothermal conditions. In 1-6, each of L1-L3 serves as a bidentate bridging ligand. In 1, BTC anions act as tridentate ligands, and compound 1 shows a 2D polymeric structure which consists of 2-fold interpenetrating (6, 3) networks. In compound 2, BTC anions coordinate to zinc cations as tridentate ligands to form a net with (64.82)2(86)(62.8)2 topology. In compound 3, BTC anions act as tetradentate ligands and coordinate to zinc cations to form a net with (4.62.83)2(8.102)(4.6.83.10)2 topology. In compound 5, each BTC anion coordinates to three Co cations, and the framework of 5 can be simplified as (64.82)2(62.82.102)(63)2 topology. For 4 and 6, the 2D cobalt-BTC layers are linked by bis(imidazole) ligands to form 3D frameworks. In 6, the Co centers are connected by micro3-OH and carboxylate O atoms to form two kinds of cobalt-oxygen clusters. Thermogravimetric analyses (TGA) for these compounds are discussed. The luminescent properties for 1-3 and magnetic properties for 4-6 are also discussed in detail.
在水热条件下合成了六种新型配位聚合物,即[Zn1.5(BTC)(L1)(H2O)2].1.5H2O (1)、[Zn3(BTC)2(L2)3] (2)、[Zn3(BTC)2(L3)1.5(H2O)].H2O (3)、[Co6(BTC)4(L1)6(H2O)3].9H2O (4)、[Co1.5(BTC)(L2)1.5].0.25H2O (5)和[Co4(BTC)2(L3)2(OH)2(H2O)].4.5H2O (6),其中L1 = 1,2-双(咪唑-1-基甲基)苯,L2 = 1,3-双(咪唑-1-基甲基)苯,L3 = 1,1'-(1,4-丁二醇)双(咪唑),BTC = 1,3,5-苯三甲酸根阴离子。在1 - 6中,L1 - L3各自作为双齿桥连配体。在1中,BTC阴离子作为三齿配体,化合物1呈现出由2重互穿的(6, 3)网络组成的二维聚合物结构。在化合物2中,BTC阴离子作为三齿配体与锌阳离子配位形成具有(64.82)2(86)(62.8)2拓扑结构的网络。在化合物3中,BTC阴离子作为四齿配体与锌阳离子配位形成具有(4.62.83)2(8.102)(4.6.83.10)2拓扑结构的网络。在化合物5中,每个BTC阴离子与三个钴阳离子配位,5的骨架可简化为(64.82)2(62.82.102)(63)2拓扑结构。对于4和6,二维钴 - BTC层通过双(咪唑)配体连接形成三维骨架。在6中,钴中心通过μ3 - OH和羧酸根O原子连接形成两种钴 - 氧簇。讨论了这些化合物的热重分析(TGA)。还详细讨论了1 - 3的发光性质和4 - 6的磁性。