首页> 外文期刊>Acta Crystallographica, Section B. Structural science, crystal engineering and materials >Topological characterization of electron density, electrostatic potential and intermolecular interactions of 2-nitroimidazole: an experimental and theoretical study
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Topological characterization of electron density, electrostatic potential and intermolecular interactions of 2-nitroimidazole: an experimental and theoretical study

机译:2-硝基咪唑的电子密度,静电势和分子间相互作用的拓扑表征:实验和理论研究

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An experimental charge density distribution of 2-nitroimidazole was determined from high-resolution X-ray diffraction and the Hansen–Coppens multipole model. The 2-nitroimidazole compound was crystallized and a high-angle X-ray diffraction intensity data set has been collected at low temperature (110 K). The structure was solved and further, an aspherical multipole model refinement was performed up to octapole level; the results were used to determine the structure, bond topological and electrostatic properties of the molecule. In the crystal, the molecule exhibits a planar structure and forms weak and strong intermolecular hydrogen-bonding interactions with the neighbouring molecules. The Hirshfeld surface of the molecule was plotted, which explores different types of intermolecular interactions and their strength. The topological analysis of electron density at the bond critical points (b.c.p.) of the molecule was performed, from that the electron density ρ_(bcp)(r) and the Laplacian of electron density ?~2ρ_(bcp)(r) at the b.c.p.s of the molecule have been determined; these parameters show the charge concentration/depletion of the nitroimidazole bonds in the crystal. The electrostatic parameters like atomic charges and the dipole moment of the molecule were calculated. The electrostatic potential surface of the molecule has been plotted, and it displays a large electronegative region around the nitro group. All the experimental results were compared with the corresponding theoretical calculations performed using CRYSTAL09.
机译:通过高分辨率X射线衍射和Hansen-Coppens多极模型确定了2-硝基咪唑的实验电荷密度分布。使2-硝基咪唑化合物结晶,并在低温(110 K)下收集了高角度X射线衍射强度数据集。解决了结构问题,并进一步进行了非球面的多极模型优化,直至八极级;结果用于确定分子的结构,键拓扑和静电性质。在晶体中,分子表现出平面结构并与相邻分子形成弱而强的分子间氢键相互作用。绘制了分子的Hirshfeld表面,该表面探索了不同类型的分子间相互作用及其强度。根据电子密度ρ_(bcp)(r)和电子密度π〜2ρ_(bcp)(r)的拉普拉斯算式对分子的键临界点(bcp)进行电子拓扑分析。已经确定了分子的这些参数显示了晶体中硝基咪唑键的电荷浓度/损耗。计算了静电参数,例如原子电荷和分子的偶极矩。已经绘制了分子的静电势表面,并在硝基周围显示出较大的负电性区域。将所有实验结果与使用CRYSTAL09进行的相应理论计算进行比较。

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