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首页> 外文期刊>Supramolecular chemistry >Pre-organisation or a hydrogen bonding mismatch: Silver(I) diamide ligand coordination polymers versus discrete metallo-macrocyclic assemblies
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Pre-organisation or a hydrogen bonding mismatch: Silver(I) diamide ligand coordination polymers versus discrete metallo-macrocyclic assemblies

机译:预组织或氢键不匹配:银(I)二酰胺配体配位聚合物与离散的金属大环组装体

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The investigation of novel motifs to selectively complex anions is an area of considerable importance due to the significant environmental, biological and medicinal roles of anions. The synthesis of discrete metallo-macrocyclic compounds or coordination polymers displaying anion-binding pockets can generate specific anion receptors from relatively simple components. Here, we examine the self-assembly of a series of flexible diamide compounds L1-L5 with silver(I) metal salts. A new diamide ligand, 2,6-[N,N-bis(di-(pyridin-2-yl)methyl) pyridine]-2,6-dicarboxamide (L5), with two chelating di-2-pyridylmethyl donor groups, was also prepared. Compounds L1-L3, lacking the pre-organising effect of a central 2,6-pyridine dicarboxamide core, form 1D coordination polymers {[Ag(L1)(CH_3CN)](PF_6)} n (6), {[Ag(L2)](NO_3)·(H_2O)]} n (7) and {[AgNO_3(L3)] ·(CH_3OH)]} n (9) which in turn form 2D and 3D hydrogen-bonded networks through orthogonal hydrogen bonding. In one instance, L2 gives rise to a dinuclear metallo-macrocycle in the solid state, [Ag 2(CF_3CO_2) 2(L2)_2][Ag_2(μ_2-CF_3CO_2)_2_(L2)_2] (8). Both diamide ligands L4 and L5 form dinuclear metallo-macrocycles, [Ag_2(NO_2) 2(L4)_2] (10) and [Ag_2(L5)_2](NO_3)_2·2CH_3OH·2H_2O (11), in solution and in the solid state. Where possible, all compounds were investigated in solution and their solid-state structures were determined using X-ray crystallography. This enabled the effect of competing supramolecular synthons, covalent M-L bonding and hydrogen bonding, to be examined by comparing the solution and solid-state behaviour of each metal-ligand combination.
机译:由于阴离子在环境,生物学和医学上的重要作用,对选择性复杂的阴离子的新颖基序的研究是相当重要的领域。具有阴离子结合口袋的离散的金属大环化合物或配位聚合物的合成可以从相对简单的组分中生成特定的阴离子受体。在这里,我们检查了一系列柔性二酰胺化合物L1-L5与银(I)金属盐的自组装。一个新的二酰胺配体2,6- [N,N-双(二-(吡啶-2-基)甲基)吡啶] -2,6-二甲酰胺(L5),带有两个螯合的二-2-吡啶甲基供体基团,也准备好了。缺乏中心2,6-吡啶二甲酰胺核心的预组织作用的化合物L1-L3形成1D配位聚合物{[Ag(L1)(CH_3CN)](PF_6)} n(6),{[Ag(L2 )](NO_3)·(H_2O)} n(7)和{[AgNO_3(L3)]·(CH_3OH)]} n(9)依次通过正交氢键形成2D和3D氢键网络。在一个实例中,L 2产生固态的双核金属大环[Ag 2(CF_3CO_2)2(L2)_2] [Ag_2(μ_2-CF_3CO_2)_2_(L2)_2](8)。二酰胺配体L4和L5均在溶液和溶液中形成双核金属大环[Ag_2(NO_2)2(L4)_2](10)和[Ag_2(L5)_2](NO_3)_2·2CH_3OH·2H_2O(11)固态。尽可能在溶液中研究所有化合物,并使用X射线晶体学测定其固态结构。通过比较每种金属-配体组合的溶液和固态行为,可以检验竞争性超分子合成子,共价M-L键和氢键的作用。

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