Laboratory of Biocrystallography and Computational Molecular Biology, Department of Physics, Periyar University, Salem 636 011, India.
Faculty of Chemistry, University of Warsaw, Warsaw 02093, Poland.
Acta Crystallogr C Struct Chem. 2022 Mar 1;78(Pt 3):181-191. doi: 10.1107/S2053229622001280. Epub 2022 Feb 14.
The proton-transfer complexes 2-amino-4-methoxy-6-methylpyrimidinium (2A4M6MP) 4-aminosalicylate (4AMSA), CHNO·CHNO, I, and 5-chlorosalicylate (5ClSA), CHNO·CHClO, II, were synthesized by slow evaporation and crystallized. The crystal structures of both I and II were determined by single-crystal X-ray structure analysis. The crystal structures of both salts exhibit O-H...O, N-H...O, N-H...N and C-H...O interactions in their crystals. The 4AMSA and 5ClSA anions in combination with the 2A4M6MP cations form distinct synthons, which are represented by the graph-set notations R(8), R(8) and R(8). Furthermore, the ΔpK values were calculated and clearly demonstrate that 2A4M6MP is a good salt former when combined with carboxylic acids. Hirshfeld surface analysis was used to quantify the weak and strong interactions in the solid state, and energy framework calculations showed the stability of the hydrogen-bonding interactions. QTAIM (quantum theory of atoms in molecules) analysis revealed the nature of the chemical bonding in I and II, and the charge-density distribution in the intermolecular interactions in the crystal structures.
质子转移配合物 2-氨基-4-甲氧基-6-甲基嘧啶鎓(2A4M6MP)对氨基水杨酸(4AMSA),CHNO·CHNO,I 和 5-氯水杨酸(5ClSA),CHNO·CHClO,II 通过缓慢蒸发和结晶合成。通过单晶 X 射线结构分析确定了这两种盐的晶体结构。两种盐的晶体结构在其晶体中都表现出 O-H...O、N-H...O、N-H...N 和 C-H...O 相互作用。4AMSA 和 5ClSA 阴离子与 2A4M6MP 阳离子结合形成不同的连接基元,分别由图形集符号 R(8)、R(8)和 R(8)表示。此外,还计算了 ΔpK 值,清楚地表明 2A4M6MP 与羧酸结合时是一种很好的盐形成物。利用 Hirshfeld 表面分析来量化固态中的弱相互作用和强相互作用,并进行能量框架计算以显示氢键相互作用的稳定性。QTAIM(分子中的原子量子理论)分析揭示了 I 和 II 中化学键的本质,以及晶体结构中分子间相互作用的电荷密度分布。