Khavasi Hamid Reza, Mir Mohammad Sadegh Bahareh
Shahid Beheshti University, Department of Chemistry, Tehran, Iran.
Dalton Trans. 2015 Mar 28;44(12):5488-502. doi: 10.1039/c4dt03518f.
In order to understand how the polarization of aromatic systems, through the introduction of a nitrogen heteroatom, affects the π-π interactions and crystal packing of mercury coordination compounds, in this study, N-(quinolin-2-yl)pyrazine-2-carboxamide and N-(quinolin-3-yl)pyrazine-2-carboxamide ligands were employed in the synthesis of five Hg(II) complexes, [HgBr2(L2=quin)2]n, 1, [HgI2(L2=quin)], 2, [HgCl2(L3=quin)]n, 3, [Hg3Br6(L3=quin)2]n, 4, and [Hg3I6(L3=quin)2]n, 5. X-ray single crystal diffraction analysis of these compounds revealed that all the complexes have polymeric structures except complex 2, which is a discrete compound. Complexes 1 and 3 have 1D and 2D polymeric structures, respectively, while complexes 4 and 5 are 3D coordination polymers. In comparison to homologous complexes containing the N-(naphthalene-2-yl)pyrazine-2-carboxamide ligand, L2=naph, interestingly, the structural analysis clearly shows that the replacement of the naphthyl CH group with a nitrogen atom changes the spatial extent of the π-electron cloud and the polarity of the aromatic ring, from L2=naph adducts to L2=quin and L3=quin adducts, and the propensity to form π-π interactions increases. These π-π stacking interaction synthons affect the coordination geometry and structural assembly. This study reveals the undeniable contribution of π-π stacking interactions to the organization and stabilization of some of the crystal structures reported here.
为了理解通过引入氮杂原子使芳香体系极化如何影响汞配位化合物的π-π相互作用和晶体堆积,在本研究中,N-(喹啉-2-基)吡嗪-2-甲酰胺和N-(喹啉-3-基)吡嗪-2-甲酰胺配体被用于合成五个Hg(II)配合物,即[HgBr2(L2=quin)2]n(1)、[HgI2(L2=quin)](2)、[HgCl2(L3=quin)]n(3)、[Hg3Br6(L3=quin)2]n(4)和[Hg3I6(L3=quin)2]n(5)。对这些化合物的X射线单晶衍射分析表明,除了离散化合物2之外,所有配合物都具有聚合结构。配合物1和3分别具有一维和二维聚合结构,而配合物4和5是三维配位聚合物。有趣的是,与含有N-(萘-2-基)吡嗪-2-甲酰胺配体(L2=naph)的同源配合物相比,结构分析清楚地表明,用氮原子取代萘基的CH基团会改变π电子云的空间范围和芳香环的极性,从L2=naph加合物到L2=quin和L3=quin加合物,并且形成π-π相互作用的倾向增加。这些π-π堆积相互作用合成子影响配位几何和结构组装。本研究揭示了π-π堆积相互作用对本文报道的一些晶体结构的组织和稳定所做出的不可否认的贡献。