Department of Physical and Analytical Chemistry, 16747University of Jaén, Jaén, Spain.
Appl Spectrosc. 2022 Feb;76(2):216-227. doi: 10.1177/00037028211060073. Epub 2022 Jan 8.
The molecular structure and solution-state molecular interactions in the popular non-steroidal anti-inflammatory drug, ketoprofen, are extensively studied with the aim of gaining a better understanding of the chemical behavior of its solution state and its connection to its nucleation pathway and crystallization outcome. Using as reference solid-state X-ray structures of enantiomeric and racemic forms of ketoprofen, a set of self-assembly models underpinned by density functional theory calculations has been considered for the analysis of spectroscopic data, infrared (IR) and vibrational circular dichroism (VCD), obtained for solutions of the samples as a function of composition and solvent. From our results it can be concluded that, contrary to the general belief for generic carboxylic acids, there are no cyclic dimeric structures of ketoprofen present in solution, but rather linear arrays made up of two (in high polar or diluted media) or more units (in low polar or low dilution media). This observation is in line with the idea that the weak contacts (other than H-bonding) would hold the key to molecular self-assembly, in agreement with recent studies on other aromatic carboxylic acids.
广泛研究了广受欢迎的非甾体抗炎药酮洛芬的分子结构和溶液状态下的分子相互作用,旨在更好地了解其溶液状态的化学行为及其与成核途径和结晶结果的关系。使用酮洛芬对映体和外消旋形式的固态 X 射线结构作为参考,考虑了一组基于密度泛函理论计算的自组装模型,以分析随组成和溶剂变化的样品溶液的光谱数据,包括红外(IR)和振动圆二色性(VCD)。从我们的结果可以得出结论,与人们普遍认为的一般羧酸不同,酮洛芬在溶液中不存在环状二聚体结构,而是由两个(在高极性或稀释介质中)或更多单元(在低极性或低稀释介质中)组成的线性阵列。这一观察结果与弱相互作用(除氢键以外)是分子自组装关键的观点一致,这与最近对其他芳香羧酸的研究一致。
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