Shishkina Svitlana V, Vaksler Yevhenii A, Konovalova Irina S, Dyakonenko Victoriya V, Varchenko Victoriya V
SSI Institute for Single Crystals NAS of Ukraine, Department of X-ray Diffraction Study and Quantum Chemistry, 60 Nauky ave., Kharkiv 61001, Ukraine.
ACS Omega. 2022 May 16;7(21):17544-17554. doi: 10.1021/acsomega.1c06967. eCollection 2022 May 31.
Three polymorphic structures of mefenamic acid, which is a very popular drug, have been studied using quantum chemical methods. It has been shown that the centrosymmetric dimer formed due to two O-H···O hydrogen bonds is a complex building unit in all of the polymorphic structures under study. On the basis of an analysis of the pairwise interaction energies between molecules, the polymorphic forms and are classified as columnar-layered while the polymorphic form has a columnar structure. The stabilities of the three polymorphic forms of mefenamic acid under ambient conditions ( > > ) correlate with the degree of anisotropy of the interaction energies between columns (primary basic structural motifs) formed due to stacking interactions. The shear deformation modeling of strongly bound layers in all of the polymorphic structures has not revealed any possibility for deformation of the crystal structure. The construction of the shift energy profiles and calculation of the energy barriers for the displacement along the (100) crystallographic plane in the [100], [010], and [011] crystallographic directions make it possible to explain the experimental data obtained for commercially available polymorphic structure in a diamond anvil cell. The absence of any local minimum near the starting point on the shift energy profile and the extremely high energy barrier can be considered as criteria for the impossibility of a crystal structure deformation under pressure.
甲芬那酸是一种非常常用的药物,已使用量子化学方法研究了其三种多晶型结构。结果表明,由两个O-H···O氢键形成的中心对称二聚体是所有研究的多晶型结构中的一个复杂构建单元。基于分子间成对相互作用能的分析,多晶型形式α和β被归类为柱状层状,而多晶型形式γ具有柱状结构。甲芬那酸的三种多晶型形式在环境条件下的稳定性(γ>β>α)与由于堆积相互作用形成的柱(主要基本结构单元)之间相互作用能的各向异性程度相关。对所有多晶型结构中强结合层的剪切变形建模未发现晶体结构有任何变形的可能性。构建位移能量分布图并计算沿[100]、[010]和[011]晶向在(100)晶面上位移的能垒,使得解释在金刚石对顶砧池中获得的市售多晶型结构γ的实验数据成为可能。位移能量分布图上起点附近没有任何局部最小值以及极高的能垒可被视为压力下晶体结构不可能变形的标准。