Pawlędzio Sylwia, Makal Anna, Trzybiński Damian, Woźniak Krzysztof
Biological and Chemical Research Centre, Department of Chemistry, University of Warsaw, Żwirki i Wigury 101, Warsaw 02-089, Poland.
IUCrJ. 2018 Oct 27;5(Pt 6):841-853. doi: 10.1107/S2052252518013222. eCollection 2018 Nov 1.
The crystal and molecular structure of the pure ()-enantiomer of the popular analgesic and anti-inflammatory drug ketoprophen (α-ket) is reported. A detailed aspherical charge-density model based on high-resolution X-ray diffraction data has been refined, yielding a high-precision geometric description and classification of the O-H⋯O interactions as medium strength hydrogen bonds. The crystal structure of the racemic form of ketoprophen (β-ket) was also redetermined at 100 K, at 0.5 Å resolution. A previously unreported disorder (10% occupancy) was discovered. In contrast to the racemic β-ket case, the ()-enantiomer crystallizes with two independent molecules in the asymmetric unit with two distinct conformations. The major difference between the β-ket and α-ket crystal forms lies in the formation of distinct hydrogen-bonded motifs: a closed ring motif in β-ket infinite chains of hydrogen bonds in the chiral α-ket structure. However, the overall crystal packing of both forms is surprisingly similar, with close-packed layers of antiparallel-oriented benzo-phenone moieties bound by C-H⋯π interactions. Notably, the most important stabilizing term in the total lattice energies in both instances proved to be the dispersion related to these interactions. Both forms of the title compound (α- and β-ket) were additionally characterized by differential scanning calorimetry and thermogravimetric analysis.
报道了常用镇痛抗炎药酮洛芬(α-酮洛芬)纯()-对映体的晶体和分子结构。基于高分辨率X射线衍射数据的详细非球电荷密度模型得到了优化,得到了高精度的几何描述,并将O-H⋯O相互作用分类为中等强度氢键。外消旋酮洛芬(β-酮洛芬)的晶体结构也在100 K、0.5 Å分辨率下重新测定。发现了一种以前未报道的无序现象(占有率为10%)。与外消旋β-酮洛芬的情况不同,()-对映体在不对称单元中以两个独立分子结晶,具有两种不同的构象。β-酮洛芬和α-酮洛芬晶体形式的主要区别在于形成了不同的氢键基序:β-酮洛芬中为闭环基序,手性α-酮洛芬结构中为无限氢键链。然而,两种形式的整体晶体堆积惊人地相似,反平行取向的二苯甲酮部分的密堆积层通过C-H⋯π相互作用结合。值得注意的是,在这两种情况下,总晶格能量中最重要的稳定项被证明是与这些相互作用相关的色散作用。此外,通过差示扫描量热法和热重分析对标题化合物的两种形式(α-酮洛芬和β-酮洛芬)进行了表征。