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首页> 外文期刊>Chemistry central journal >Supramolecular architectures and structural diversity in a series of lead (II) Chelates involving 5-Chloro/Bromo thiophene-2-carboxylate and N,N’-donor ligands
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Supramolecular architectures and structural diversity in a series of lead (II) Chelates involving 5-Chloro/Bromo thiophene-2-carboxylate and N,N’-donor ligands

机译:一系列涉及5-氯/溴噻吩-2-羧酸盐和N,N’-供体配体的铅(II)螯合物的超分子结构和结构多样性

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Background Lead is a heavy toxic metal element in biological systems and is one of the major pollutants as a result of its widespread use in industries. In spite of its negative roles the coordination chemistry of Pb(II) complexes is a matter of interest. The N,N’-bidentate aromatic bases such as BPY,4-BPY and PHEN (BPY?=?2,2′bipyridine, 4-BPY?=?4,4′-dimethyl-2,2′-bipyridine, PHEN?=?1,10-Phenanthroline) are widely used to build supramolecular architectures because of their excellent coordinating ability and large conjugated system that can easily form π-π interactions among their aromatic moieties. A series of novel Pb(II) complexes in concert with 5-CTPC, 5-BTPC (5-CTPC?=?5-chlorothiophen-2-carboxylate, 5-BTPC?=?5-bromothiophen-2-carboxylate) and corresponding bidentate chelating N.N′ ligands have been synthesized and characterized. Results Five new Pb (II) complexes [Pb(BPY)(5-CTPC)2] (1), [Pb(4-BPY)(5-CTPC)2] (2), [Pb2(PHEN)2(5-CTPC)4] (3), [Pb(4-BPY)(5-BTPC)2] (4) and [Pb2(PHEN)2(5-BTPC)2(ACE)2] (5) have been synthesized. Even though in all these complexes the molar ratio of Pb, carboxylate, N,N-chelating ligand are the same (1:2:1), there is a significant structural diversity. These complexes have been characterised and investigated by elemental analysis, IR, 1H-NMR,13C-NMR, TGA, and photoluminescence studies. Single crystal X-ray diffraction studies reveal that complexes (1, 2) and (4) are mononuclear while (3 and 5) are dinuclear in nature which may result from the chelating nature of the ligands, various coordination modes of the carboxylates, and the coordination geometry of the Pb(II) ions. Conclusions The observation of structures 2,4 and 3,5 show the structural changes made just chloro/bromo substituent of the thiophene ring. A detailed packing analysis has been undertaken to delineate the role of valuable non covalent interactions like X…π, H…X, (X?=?Cl/Br). A quadruple hydrogen bond linking the monomeric units and generating a supramolecular architecture is observed in (1). The metal bite unit comprised of PbN2C2 (i.e. Pb-N-C-C-N-Pb) is the repeating unit in all the five complexes and they have almost same geometrical parameters. This metal bite has been identified as the self assembly unit in complexes.
机译:背景技术铅是生物系统中的重有毒金属元素,由于其在工业中的广泛使用而成为主要污染物之一。尽管它具有消极作用,但Pb(II)配合物的配位化学还是一个令人关注的问题。 N,N′-二元芳族碱基,例如BPY,4-BPY和PHEN(BPYα= β2,2′-联吡啶,4-BPYα= β4,4′-二甲基-2,2′-联吡啶,PHEN α= α1,10-菲咯啉由于其优异的配位能力和大的共轭体系而易于在其芳族部分之间形成π-π相互作用,因此被广泛用于构建超分子体系。与5-CTPC,5-BTPC(5-CTPCα=β5-氯噻吩-2-羧酸酯,5-BTPCα=β5-溴噻吩-2-羧酸酯)和相应的配合物形成的一系列新颖的Pb(II)配合物。已经合成并表征了双齿螯合NN'配体。结果5种新的Pb(II)配合物[Pb(BPY)(5-CTPC)2](1),[Pb(4-BPY)(5-CTPC)2](2),[Pb2(PHEN)2(5) -CTPC)4](3),[Pb(4-BPY)(5-BTPC)2](4)和[Pb2(PHEN)2(5-BTPC)2(ACE)2](5)已合成。即使在所有这些配合物中,Pb,羧酸盐,N,N-螯合配体的摩尔比相同(1:2:1),仍存在显着的结构多样性。通过元素分析,IR,1H-NMR,13C-NMR,TGA和光致发光研究对这些配合物进行了表征和研究。单晶X射线衍射研究表明,配合物(1、2)和(4)是单核的,而(3和5)本质上是双核的,这可能是由于配体的螯合性质,羧酸盐的各种配位方式以及Pb(II)离子的配位几何。结论对结构2,4和3,5的观察表明,仅噻吩环的氯/溴取代基发生了结构变化。已经进行了详细的包装分析,以描述有价值的非共价相互作用,如X…π,H…X(X?=?Cl / Br)。在(1)中观察到连接单体单元并产生超分子结构的四氢键。由PbN2C2组成的金属咬合单元(即Pb-N-C-C-N-Pb)是所有五个络合物中的重复单元,它们具有几乎相同的几何参数。这种金属咬合已被识别为复合物中的自组装单元。

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