Macetti Giovanni, Sironi Luca, Rovida Costanza, Geremia Ilaria, Soave Raffaella, Presti Leonardo Lo
Department of Chemistry, Università degli Studi di Milano, Via Golgi 19, Milano, 20133 Italy.
TEAM mastery S.r.l., Via Giuseppe Ferrari 14, Como, 22100 Italy.
R Soc Open Sci. 2024 Jun 5;11(6):231831. doi: 10.1098/rsos.231831. eCollection 2024 Jun.
This work aims at studying why azodicarbonamide (ADCA), a formally apolar compound with good hydrogen bond (HB) acceptors, is soluble only in polar aprotic solvents like dimethyl sulfoxide (DMSO) but not in water. Solubility measurements, as well as quantum mechanical and classical molecular dynamics simulations, were employed to tackle the problem. We found that in the liquid phase a polar conformer of ADCA ( = 8.7 D), unreported to date, is favoured under the enthalpic drive provided by a highly polar solvent. At the same time, the very high hydrogen bond propensity of water with itself prevents this solvent from providing an effective hydrogen bond-mediated solvation. Solvents bearing good HB acceptors, while lacking strong HB donors, contribute to further stabilizing solute-solvent adducts through weak and fluxional HBs that involve the amide groups of ADCA. Implications for the solubility of ADCA down to M concentrations were evaluated, also with the aid of classical simulations of solution nanodroplets.
这项工作旨在研究偶氮二甲酰胺(ADCA),一种具有良好氢键受体的形式上非极性的化合物,为何仅可溶于二甲基亚砜(DMSO)等极性非质子溶剂,而不溶于水。通过溶解度测量以及量子力学和经典分子动力学模拟来解决该问题。我们发现,在液相中,一种迄今未报道的ADCA极性构象体(偶极矩 = 8.7 D),在高极性溶剂提供的焓驱动下更受青睐。同时,水自身极高的氢键倾向使其无法提供有效的氢键介导溶剂化作用。带有良好氢键受体但缺乏强氢键供体的溶剂,通过涉及ADCA酰胺基团的弱且易变的氢键,有助于进一步稳定溶质 - 溶剂加合物。还借助溶液纳米液滴的经典模拟评估了低至微摩尔浓度下ADCA的溶解度情况。