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强π-π堆积合成子对汞配位化合物形成的影响;一种不寻常的拟正方形平面几何构型。

Effect of robust π-π stacking synthon on the formation of mercury coordination compounds; an unusual pseudo-square planar geometry.

机构信息

Faculty of Chemistry, Shahid Beheshti University, General Campus, Evin, Tehran 1983963113, Iran.

出版信息

Dalton Trans. 2014 Apr 14;43(14):5564-73. doi: 10.1039/c3dt53220h.

Abstract

In this study, three Hg(II) complexes, [HgCl2(L(2-naph))]n, 1, [HgBr2(L(2-naph))]n, 2 and [HgI2(L(2-naph))2], 3 where L(2-naph) is N-(naphthalene-2-yl)pyrazine-2-carboxamide ligand have been synthesized and characterized. X-ray single crystal diffraction analysis of these compounds reveals that 1 and 2 are isostructural coordination polymers and 3 is a discrete compound. In comparison to homologue complexes containing N-(naphthalene-1-yl)pyrazine-2-carboxamide ligand, interestingly, structural analysis clearly shows that displacing substituent position plays an important role in the formation of the supramolecular organization of molecular complexes. The common feature in the crystal packing of these complexes is that there is a strong tendency to form π-π stacking interaction between pyrazine and naphthalene rings. These π-π stacking interaction synthons affect the coordination geometry and structural assembly. Also, theoretical methods show the π-π stacking interaction energies within a range of -64.13 to -70.51 kJ mol(-1). It is notable that in 3, cooperation of intermolecular π-π stacking synthon and intramolecular C-H(pyz)···I-Hg hydrogen bond resulted in the formation of unusual pseudo-square planar geometry around the Hg(II) center. This study reveals an undeniable contribution of π-π stacking interaction to the organization and stabilization of some of the crystal structures reported here.

摘要

在这项研究中,合成并表征了三个 Hg(II) 配合物,[HgCl2(L(2-naph))]n,1、[HgBr2(L(2-naph))]n,2 和[HgI2(L(2-naph))2],3,其中 L(2-naph)是 N-(萘-2-基)吡嗪-2-甲酰胺配体。这些化合物的 X 射线单晶衍射分析表明,1 和 2 是同构的配位聚合物,3 是离散的化合物。与含有 N-(萘-1-基)吡嗪-2-甲酰胺配体的同系物相比,有趣的是,结构分析清楚地表明,取代基位置的变化在分子配合物的超分子组织形成中起着重要作用。这些配合物晶体堆积的共同特征是,吡嗪和萘环之间存在强烈的形成π-π堆积相互作用的趋势。这些π-π堆积相互作用桥联影响配位几何形状和结构组装。此外,理论方法表明π-π堆积相互作用能在-64.13 到-70.51 kJ mol(-1)的范围内。值得注意的是,在 3 中,分子间π-π堆积桥联和分子内 C-H(pyz)···I-Hg 氢键的协同作用导致 Hg(II)中心周围形成了不寻常的准平面正方形几何形状。这项研究揭示了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化的不可忽视的贡献。

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