Gumireddy Ashwini, DeBoyace Kevin, Rupprecht Alexander, Gupta Mohit, Patel Saloni, Flaherty Patrick T, Wildfong Peter L D
Graduate School of Pharmaceutical Sciences, Duquesne University, 600 Forbes Ave, Pittsburgh, PA 15282, USA.
Department of Chemistry, Duquesne University, 600 Forbes Ave, Pittsburgh, PA 15282, USA.
Acta Crystallogr E Crystallogr Commun. 2021 Mar 5;77(Pt 4):360-365. doi: 10.1107/S2056989021002346. eCollection 2021 Apr 1.
The title sterically congested piperazine derivative, CHFNO, was prepared using a modified Bruylants approach. A search of the Cambridge Structural Database identified 51 compounds possessing an butyl piperazine substructure. Of these only 14 were asymmetrically substituted on the piperazine ring and none with a synthetically useful second nitro-gen. Given the novel chemistry generating a pharmacologically useful core, determination of the crystal structure for this compound was necessary. The piperazine ring is present in a chair conformation with di-equatorial substitution. Of the two N atoms, one is hybridized while the other is hybridized. Inter-molecular inter-actions resulting from the crystal packing patterns were investigated using Hirshfeld surface analysis and fingerprint analysis. Directional weak hydrogen-bond-like inter-actions (C-H⋯O) and C-H⋯π inter-actions with the dispersion inter-actions as the major source of attraction are present in the crystal packing.
标题为空间拥挤的哌嗪衍生物CHFNO,采用改良的布鲁兰特方法制备。对剑桥结构数据库的搜索发现了51种具有丁基哌嗪亚结构的化合物。其中只有14种在哌嗪环上有不对称取代,且没有一种带有具有合成用途的第二个氮原子。鉴于产生具有药理活性核心的新化学性质,有必要测定该化合物的晶体结构。哌嗪环以二平伏键取代的椅式构象存在。两个氮原子中,一个是 杂化,另一个是 杂化。利用 Hirshfeld 表面分析和指纹分析研究了由晶体堆积模式产生的分子间相互作用。晶体堆积中存在定向的类弱氢键相互作用(C-H⋯O)和C-H⋯π相互作用,其中色散相互作用是主要的吸引力来源。