Lv Dingding, Evangelisti Luca, Maris Assimo, Song Wentao, Salvitti Giovanna, Melandri Sonia
Dipartimento di Chimica "G. Ciamician", Università di Bologna, via F. Selmi 2, 40126, Bologna, Italy.
J Phys Chem A. 2022 Oct 6;126(39):6882-6889. doi: 10.1021/acs.jpca.2c04599. Epub 2022 Sep 23.
The interaction of dimethyl sulfoxide with water has been investigated by Fourier-transform microwave spectroscopy of the 1:1 complex and its isotopologues, complemented with quantum chemical calculations. The rotational spectra of S and C isotopologues in natural abundance and the HO and deuterated water enriched isotopologues have been measured, allowing a partial structure determination and establishing the position of water in the complex. In the most stable conformation water was found to be the donor of a primary OH···OS bond to the oxygen atom of dimethyl sulfoxide and acceptor of two weak CH···OH bonds with the methyl hydrogen atoms of dimethyl sulfoxide. From the structural determination confirmed by quantum chemical calculations, the water molecule lies in the symmetry plane of dimethyl sulfoxide, and the complex has an overall symmetry. The experimental findings are supported by atoms in molecules and symmetry-adapted perturbation theories, which allowed for determining the hydrogen bond and intermolecular interaction energies, respectively.
通过对1:1络合物及其同位素变体进行傅里叶变换微波光谱研究,并辅以量子化学计算,对二甲亚砜与水的相互作用进行了研究。测量了天然丰度下S和C同位素变体以及富集的HO和氘代水同位素变体的转动光谱,从而实现了部分结构的确定,并确定了络合物中水的位置。在最稳定的构象中,发现水是与二甲亚砜的氧原子形成主要OH···OS键的供体,并且是与二甲亚砜的甲基氢原子形成两个弱CH···OH键的受体。根据量子化学计算确定的结构,水分子位于二甲亚砜的对称平面内,且该络合物具有整体对称性。分子中的原子理论和对称适配微扰理论分别支持了实验结果,它们分别用于确定氢键和分子间相互作用能。