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首页> 外文期刊>Polyhedron: The International Journal for Inorganic and Organometallic Chemistry >Structural diversity in the (Ag-NO3--2-aminopyrimidyl derivatives) system: New zero-, one-, and two-dimensional inorganic-organic hybrids
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Structural diversity in the (Ag-NO3--2-aminopyrimidyl derivatives) system: New zero-, one-, and two-dimensional inorganic-organic hybrids

机译:(Ag-NO3--2-氨基嘧啶衍生物)系统中的结构多样性:新型零维,一维和二维无机-有机杂化体

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Five new silver(I) complexes of the formula [Ag(L-1)(NO3)](n) (1), [Ag-4(L-2)(6)(NO3)(4)] (2), [Ag(L-3)(NO3)](n) (3), [Ag-3(L-4)(3)(NO3)(3)](n) (4), and [Ag(L-4)(NO3)](n) (5) have been synthesized by reactions of silver(I) nitrate with a family of 2-aminopyrimidine and its derivatives (namely, 2-aminopyrimidine (L-1), 2-amino-4,6-dimethylpyrimidine (L-2),2-amino-4-methoxy-6-methylpyrimidine (L-3), and 2-amino-4,6-dimethoxypyrimidine (L-4), respectively). The influences of substituted groups of ligands and reaction solvent systems on the structure of the complexes are discussed. The reaction of AgNO3 with L, yields a one-dimensional (1-D) zigzag chain (1). The reaction of AgNO3 with L-2 leads to a zero-dimensional (0-D) tetramer (2). When L-3 is used, a two-dimensional (2-D) grid network (3) is obtained. On the other hand, by using the same silver(I) nitrate but different reaction solvent systems, 4 and 5 are isolated, respectively. Complex 4 has a 1-D polymeric ribbon further connected by intermolecular hydrogen bonds to form a 2-D layer structure. While 5 shows a 2-D honeycomb-like layer consisting of 24-membered metallocycles. The results reveal that the nature of organic ligands and the choice of solvent all have great impact on the structure of the complexes. In addition, the secondary forces such as hydrogen-bonding interactions including intramolecular and intermolecular hydrogen bonds also play important roles in the formation of supramolecular architectures, for instance, to link low-dimensional entities to high-dimensional frameworks. The luminescence properties of the synthesized silver complexes were investigated in the solid state at room temperature. (C) 2008 Elsevier Ltd. All rights reserved.
机译:五种新的式[Ag(L-1)(NO3)](n)(1),[Ag-4(L-2)(6)(NO3)(4)]的银(I)络合物(2) ,[Ag(L-3)(NO3)](n)(3),[Ag-3(L-4)(3)(NO3)(3)](n)(4)和[Ag(L -4)(NO3)](n)(5)是通过硝酸银(I)与2-氨基嘧啶及其衍生物(即2-氨基嘧啶(L-1),2-氨基- 4,6-二甲基嘧啶(L-2),2-氨基-4-甲氧基-6-甲基嘧啶(L-3)和2-氨基-4,6-二甲氧基嘧啶(L-4)。讨论了配体的取代基和反应溶剂体系对配合物结构的影响。 AgNO3与L的反应产生一维(1-D)之字形链(1)。 AgNO3与L-2的反应生成零维(0-D)四聚体(2)。当使用L-3时,获得二维(2-D)网格网络(3)。另一方面,通过使用相同的硝酸银(I)但使用不同的反应溶剂体系,分别分离出4和5。配合物4具有1-D聚合物带,该1-D聚合物带还通过分子间氢键连接以形成2-D层结构。图5显示了由24元金属环组成的2D蜂窝状层。结果表明,有机配体的性质和溶剂的选择都对配合物的结构有很大的影响。另外,诸如分子间和分子间氢键的氢键相互作用之类的次级力在超分子结构的形成中也起着重要作用,例如,将低维实体连接到高维骨架上。在室温下以固态研究合成的银配合物的发光性质。 (C)2008 Elsevier Ltd.保留所有权利。

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