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含异二齿脲基吡啶配体的银(I)配位聚合物:配体异构、氢键和堆积相互作用的作用

Silver(I) coordination polymers containing heteroditopic ureidopyridine ligands: the role of ligand isomerism, hydrogen bonding, and stacking interactions.

作者信息

Blondeau Pascal, van der Lee Arie, Barboiu Mihail

机构信息

Institut Européen des Membranes, IEM-CNRS 5635, Place Eugène Bataillon, Montpellier, France.

出版信息

Inorg Chem. 2005 Aug 8;44(16):5649-53. doi: 10.1021/ic050278y.

Abstract

New silver (I) coordination polymers has been successfully designed and synthesized using heteroditopic ureidopyridine ligands 1 and 2 via a combination of coordinations bonds, hydrogen bonding, and pi-pi stacking interactions. This study shows an example of the orientation of the pyridine nitrogen relative to the urea moiety (4-substituted, 1, or 3-substituted, 2), used to control the packing of resulting crystalline coordination polymers. The ureidopyridine ligands present some flexibility because of the conformational rotation around the central urea moiety. The co-complexation of the silver(I) cation by two pyridine moieties and of the PF(6)(-) counteranion by the urea moiety results in the formation of discrete 1(2)AgPF(6)(-), (3) and 2(2)AgPF(6)(-), (4) complexes presenting restricted rotation around the central urea functionality. The geometrical information contained in the structures of ligands 1 and 2 and the heteroditopic complexation of silver hexafluorophosphate are fully exploited in an independent manner resulting in the emergence of quasi-rigidly preorganized linear and angular building blocks of 3 and 4, respectively. Additional pi-pi stacking contacts involving interactions between the pi-donor benzene and the pi-acceptor pyridine systems reinforce and direct the self-assembly of the above-described combined structural motifs in the solid state. Accordingly, linear and tubular arrays of pi-pi stacked architectures are generated in the solid state by synergistic and sequential metal ion complexation, hydrogen bonding, and pi-pi stacking interactions.

摘要

通过配位键、氢键和π-π堆积相互作用相结合,使用异二齿脲基吡啶配体1和2成功设计并合成了新型银(I)配位聚合物。本研究展示了吡啶氮相对于脲部分(4-取代,1;或3-取代,2)的取向实例,该取向用于控制所得结晶配位聚合物的堆积。由于围绕中心脲部分的构象旋转,脲基吡啶配体具有一定的灵活性。银(I)阳离子与两个吡啶部分的共络合以及脲部分与PF(6)(-)抗衡阴离子的共络合导致形成离散的1(2)AgPF(6)(-)(3)和2(2)AgPF(6)(-)(4)配合物,这些配合物围绕中心脲官能团呈现受限的旋转。配体1和2结构中包含的几何信息以及六氟磷酸银的异二齿络合以独立的方式得到充分利用,分别导致出现准刚性预组织的线性和角形结构单元3和4。涉及π供体苯和π受体吡啶体系之间相互作用的额外π-π堆积接触加强并指导了上述组合结构基序在固态中的自组装。因此,通过协同和顺序的金属离子络合、氢键和π-π堆积相互作用,在固态中生成了π-π堆积结构的线性和管状阵列。

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