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Crystal Engineering and Charge Density Study of Pharmaceutical Nonlinear Optical Material: Melamine-Barbital Co-Crystal

机译:药物非线性光学材料的晶体工程和电荷密度研究:三聚氰胺-巴比妥共晶体

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摘要

This paper presents topological analysis of charge density from multipolar refinement and ab initio calculations for both melamine-barbital co-crystal and isolated molecules. The comparison of electron density properties for the isolated molecules and for the co-crystal allowed one to unravel the factors contributing to the formation of specific hydrogen bond patterns in the co-crystal structure. The inspection of charge density properties revealed that N1A of barbital and N3B of melamine compete for H1A atom in hydrogen bond formation. The hydrogen bond shows an intermediate character between closed and shared shell interaction. The tendency of barbital to adopt tautomeric forms in solution which can be correlated with the shift of electron density (mesomeric effect) was emphasized. Charge density studies confirmed the existence of the mesomeric form B of barbital in the studied co-crystal. The form B was also reported in polar co-crystals comprised of barbital and barbituric acid.
机译:本文介绍了三聚氰胺-巴比妥共晶和离析分子的多极精细化和从头算的电荷密度拓扑分析。对分离出的分子和共晶体的电子密度特性的比较使人们能够揭示有助于在共晶体结构中形成特定氢键图形的因素。电荷密度性质的检查表明,巴比妥的N1A和三聚氰胺的N3B在氢键形成中竞争H1A原子。氢键显示出封闭的和共有的壳相互作用之间的中间特征。强调了巴比妥在溶液中采用互变异构形式的趋势,该趋势可能与电子密度的变化(介孔效应)相关。电荷密度研究证实了在所研究的共晶体中存在巴比妥的介晶形式B。还报道了在由巴比妥和巴比妥酸组成的极性共晶体中的B型。

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