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Synthesis and characterization of metal-organic frameworks based on 4-hydroxypyridine-2,6-dicarboxylic acid and pyridine-2,6-dicarboxylic acid ligands.
Inorganic Chemistry ( IF 4.3 ) Pub Date : 2006 Jul 24 , DOI: 10.1021/ic060550j
Hong-Ling Gao 1 , Long Yi 1 , Bin Zhao 1 , Xiao-Qing Zhao 1 , Peng Cheng 1 , Dai-Zheng Liao 1 , Shi-Ping Yan 1
Affiliation  

The self-assembly of 4-hydroxypyridine-2,6-dicarboxylic acid (H(3)CAM) and pyridine-2,6-dicarboxylic acid (H2PDA) with Zn(II) salts under hydrothermal conditions gave two novel coordination polymers {[Zn(HCAM)].H2O}n (1) and {[Zn(PDA)(H2O)(1.5)]}n (1a). 1 and 1a comprise of a 2D (4,4) net and a 1D zigzag chain, respectively, in which a new coordination mode of PDA is found. The reactions of H(3)CAM and H2PDA with Nd2O3 in the M/L ratio 2:3 gave {[Nd2(HCAM)3(H2O)4].2H2O}n (2) and {[Nd(2)(PDA)3(H2O)(3)].0.5H2O}n (2a). In 2, a square motif as a building block constructed by four Nd(III) ions was further assembled into a highly ordered 2D (4,4) grid. 2a is a 3D microporous coordination polymer. It is interesting to note that, when Ln(III) salts rather than oxides were employed, the reaction produced {[Ln(CAM)(H2O)3].H2O}n (Ln = Gd, 3; Dy, 4; Er, 5) for H(3)CAM and {[Gd2(PDA)3(H2O)3].H2O}n (3a) for H2PDA. 3-5 are 2D coordination polymers with a 3(3)4(2) uniform net, where hydroxyl groups of H3CAM coordinate with metal ions. The reaction of H3CAM and Er2O3 instead of Er(ClO4)3 produced {[Er2(HCAM)3(H2O)4].2H2O}n (6). The compounds 2a and 3a, 2 and 6 are isomorphous. The stereochemical and supramolecular effects of hydroxyl groups result in the dramatic structural changes from 1D (1a) to 2D (1) and from 2D (2) to 3D (2a). When Ln(III) salts instead of Ln2O3 were employed in the hydrothermal reactions with H(3)CAM, different self-assembly processes gave the products of different metal/ligand ratio with reactants (3-5).

中文翻译:

基于4-羟基吡啶-2,6-二羧酸和吡啶-2,6-二羧酸配体的金属-有机骨架的合成与表征。

在水热条件下,4-羟基吡啶-2,6-二羧酸(H(3)CAM)和吡啶-2,6-二羧酸(H2PDA)与Zn(II)盐的自组装产生了两种新型配位聚合物{[ Zn(HCAM)]。H2O} n(1)和{[Zn(PDA)(H2O)(1.5)]} n(1a)。1和1a分别由2D(4,4)网和1D之字形链组成,在其中找到了PDA的新协调模式。H(3)CAM和H2PDA与Nd2O3的M / L比为2:3的反应得到{[Nd2(HCAM)3(H2O)4] .2H2O} n(2)和{[Nd(2)(PDA) )3(H2O)(3)]。0.5H2O} n(2a)。在2中,由四个Nd(III)离子构成的方形图案作为构建基块进一步组装成高度有序的2D(4,4)网格。2a是3D微孔配位聚合物。有趣的是,当使用Ln(III)盐而不是氧化物时,反应生成{[Ln(CAM)(H2O)3] .H2O} n(Ln = Gd,3; Dy,4; Er,5)对于H(3)CAM和{[Gd2(PDA)3(H2O)3] .H2O} n(3a)对于H2PDA。3-5是具有3(3)4(2)均匀网的2D配位聚合物,其中H3CAM的羟基与金属离子配位。H3CAM和Er2O3代替Er(ClO4)3的反应生成{[Er2(HCAM)3(H2O)4] .2H2O} n(6)。化合物2a和3a,2和6是同构的。羟基的立体化学作用和超分子作用导致从1D(1a)到2D(1)以及从2D(2)到3D(2a)的戏剧性结构变化。当与H(3)CAM进行水热反应时使用Ln(III)盐代替Ln2O3时,不同的自组装过程会产生具有不同金属/配体比的反应物(3-5)。H3CAM和Er2O3代替Er(ClO4)3的反应生成{[Er2(HCAM)3(H2O)4] .2H2O} n(6)。化合物2a和3a,2和6是同构的。羟基的立体化学作用和超分子作用导致从1D(1a)到2D(1)以及从2D(2)到3D(2a)的戏剧性结构变化。当与H(3)CAM进行水热反应时使用Ln(III)盐代替Ln2O3时,不同的自组装过程会产生具有不同金属/配体比的反应物(3-5)。H3CAM和Er2O3代替Er(ClO4)3的反应生成{[Er2(HCAM)3(H2O)4] .2H2O} n(6)。化合物2a和3a,2和6是同构的。羟基的立体化学作用和超分子作用导致从1D(1a)到2D(1)以及从2D(2)到3D(2a)的戏剧性结构变化。当与H(3)CAM进行水热反应时使用Ln(III)盐代替Ln2O3时,不同的自组装过程会产生具有不同金属/配体比的反应物(3-5)。
更新日期:2017-01-31
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