Department of Chemical, Biological, Pharmaceutical and Environmental Sciences, University of Messina, Viale F. Stagno d'Alcontres 31, 98166 Messina, Italy.
Molecules. 2021 Sep 22;26(19):5746. doi: 10.3390/molecules26195746.
Interest in co-crystals formation has been constantly growing since their discovery, almost a century ago. Such success is due to the ability to tune the physical-chemical properties of the components in solid state by avoiding a change in their molecular structure. The properties influenced by the co-crystals formation range from an improvement of mechanical features and chemical stability to different solubility. In the scientific research area, the pharmacological field is undoubtedly one of those in which an expansion of the co-crystal knowledge can offer wide benefits. In this work, we described the crystalline structure of hexamethylenetetramine co-crystallized with the isophthalic acid, and we compared it with another co-crystal, showing the same components but different stoichiometry. To give a wider overview on the nature of the interactions behind the observed crystal packing and to rationalize the reasons of its formation, a computational analysis on such structures was carried out.
自近一个世纪前发现共晶以来,人们对共晶形成的兴趣一直在不断增长。这种成功归因于能够通过避免改变其分子结构来调整固态组分的物理化学性质。受共晶形成影响的性质范围从改善机械性能和化学稳定性到不同的溶解度。在科学研究领域,药理学领域无疑是那些可以广泛受益于共晶知识扩展的领域之一。在这项工作中,我们描述了己二胺与间苯二甲酸共晶的晶体结构,并将其与另一种共晶进行了比较,这两种共晶具有相同的成分但化学计量不同。为了更全面地了解观察到的晶体堆积背后的相互作用性质,并合理化其形成的原因,对这些结构进行了计算分析。