Gil Diego M, Salomón Fernando F, Echeverría G A, Piro Oscar E, Pérez Hiram, Altabef Aida Ben
INQUINOA (CONICET-UNT), Facultad de Bioquímica, Química y Farmacia, Universidad Nacional de Tucumán, San Lorenzo 456, T4000CAN San Miguel de Tucumán, Argentina.
INQUINOA (CONICET-UNT), Facultad de Bioquímica, Química y Farmacia, Universidad Nacional de Tucumán, San Lorenzo 456, T4000CAN San Miguel de Tucumán, Argentina.
Spectrochim Acta A Mol Biomol Spectrosc. 2017 Oct 5;185:286-297. doi: 10.1016/j.saa.2017.05.066. Epub 2017 May 31.
The Schiff base of the title has been synthesized and its crystal structure determined by single-crystal X-ray diffraction. The compound was characterized by IR, Raman, H NMR, C NMR and electronic absorption spectra. DFT calculations provide the quantum chemical basis for the observed molecular conformation. A study of intermolecular interactions of the title compound is compared with seven other closely related structures and reveals that molecules in most of the compounds are linked by a cooperative effect of strong and weak hydrogen bonds, CHπ, and ππ stacking interactions, and also lpπ contacts. Lattice energy calculations indicate that the dispersion component is the major contribution, with the coulombic term playing a significant role in the total energy. Interaction energies for molecular pairs involving NH···N bonds indicate a dominant contribution to packing stabilization coming from coulomb component. Hirshfeld surfaces and 2D-fingerprint plots allowed us to visualize different intermolecular contacts and its relative contributions to total surface in each compound. The analysis of electrostatic potential (ESP) maps correlates well with the computed energies providing evidences on the dominant electrostatic nature of NH···N and NH···O interactions.
已合成了标题席夫碱,并通过单晶X射线衍射确定了其晶体结构。该化合物通过红外光谱、拉曼光谱、氢核磁共振、碳核磁共振和电子吸收光谱进行了表征。密度泛函理论计算为观察到的分子构象提供了量子化学基础。对标题化合物分子间相互作用的研究与其他七个密切相关的结构进行了比较,结果表明大多数化合物中的分子通过强弱氢键、CHπ和ππ堆积相互作用以及孤对电子-π接触的协同效应相连。晶格能计算表明,色散成分是主要贡献,库仑项在总能量中起着重要作用。涉及NH···N键的分子对的相互作用能表明,库仑成分对堆积稳定性起主要贡献。Hirshfeld表面和二维指纹图谱使我们能够可视化不同的分子间接触及其对每个化合物总表面的相对贡献。静电势(ESP)图的分析与计算能量相关性良好,为NH···N和NH···O相互作用的主要静电性质提供了证据。