Kurnakov Institute of General and Inorganic Chemistry, Russian Academy of Sciences, Leninskii Prosp. 31, 119991 Moscow, Russia.
G.A. Krestov Institute of Solution Chemistry RAS, 153045 Ivanovo, Russia.
Molecules. 2022 Jan 22;27(3):717. doi: 10.3390/molecules27030717.
Two new peroxosolvates of drug-like compounds were synthesized and studied by a combination of X-ray crystallographic, Raman spectroscopic methods, and periodic DFT computations. The enthalpies of H-bonds formed by hydrogen peroxide (HO) as a donor and an acceptor of protons were compared with the enthalpies of analogous H-bonds formed by water (HO) in isomorphic (isostructural) hydrates. The enthalpies of H-bonds formed by HO as a proton donor turned out to be higher than the values of the corresponding H-bonds formed by HO. In the case of HO as a proton acceptor in H-bonds, the ratio appeared reversed. The neutral O∙∙∙H-O/O∙∙∙H-N bonds formed by the lone electron pair of the oxygen atom of water were the strongest H-bonds in the considered crystals. In the paper, it was found out that the low-frequency Raman spectra of isomorphous crystalline hydrate and peroxosolvate of N-(5-Nitro-2-furfurylidene)-1-aminohydantoin are similar. As for the isostructural hydrate and peroxosolvate of the salt of protonated 2-amino-nicotinic acid and maleic acid monoanion, the Raman spectra are different.
两种新的药物类似物的过氧溶剂化物通过 X 射线晶体学、拉曼光谱方法和周期性 DFT 计算的组合进行了合成和研究。比较了过氧化氢 (HO) 作为质子供体和受体形成氢键的焓与水 (HO) 在同构 (同晶) 水合物中形成类似氢键的焓。结果表明,HO 作为质子供体形成氢键的焓高于 HO 形成的相应氢键的焓。在 HO 作为质子受体形成氢键的情况下,比例出现了反转。由水分子中氧原子的孤电子对形成的中性 O∙∙∙H-O/O∙∙∙H-N 键是所研究晶体中最强的氢键。在本文中发现,同晶的水合晶体和 N-(5-硝基-2-糠叉基)-1-氨基乙内酰脲的过氧溶剂化物的低频拉曼光谱相似。对于质子化 2-氨基烟酸和马来酸单阴离子盐的同晶结构水合物和过氧溶剂化物,拉曼光谱则不同。