Virk Amninder S, Codling Dale J, Stait-Gardner Timothy, Price William S
Nanoscale Organisation and Dynamics Group, School of Science and Health, University of Western Sydney, Locked Bag 1797, Penrith, NSW, 2751, Australia.
Chemphyschem. 2015 Dec 21;16(18):3814-23. doi: 10.1002/cphc.201500670. Epub 2015 Nov 2.
The structure and dynamics of hydrogen-bonded structures are of significant importance in understanding many binary mixtures. Since self-diffusion is very sensitive to changes in the molecular weight and shape of the diffusing species, hydrogen-bonded associated structures in dimethylsulfoxide-methanol (DMSO-MeOH) and DMSO-ethanol (DMSO-EtOH) mixtures are investigated using nuclear magnetic resonance (NMR) diffusion experiments and molecular dynamics (MD) simulations over the entire composition range at 298 K. The self-diffusion coefficients of DMSO-MeOH and DMSO-EtOH mixtures decrease by up to 15% and 10%, respectively, with DMSO concentration, indicating weaker association as compared to DMSO-water mixtures. The calculated heat of mixing and radial distribution functions reveal that the intermolecular structures of DMSO-MeOH and DMSO-EtOH mixtures do not change on mixing. DMSO-alcohol hydrogen-bonded dimers are the dominant species in mixtures. Direct comparison of the simulated and experimental data afford greater insights into the structural properties of binary mixtures.
氢键结构的结构和动力学对于理解许多二元混合物至关重要。由于自扩散对扩散物种的分子量和形状变化非常敏感,因此在298 K的整个组成范围内,使用核磁共振(NMR)扩散实验和分子动力学(MD)模拟研究了二甲基亚砜 - 甲醇(DMSO-MeOH)和二甲基亚砜 - 乙醇(DMSO-EtOH)混合物中的氢键缔合结构。DMSO-MeOH和DMSO-EtOH混合物的自扩散系数分别随DMSO浓度降低高达15%和10%,这表明与DMSO-水混合物相比,缔合作用较弱。计算得到的混合热和径向分布函数表明,DMSO-MeOH和DMSO-EtOH混合物的分子间结构在混合时不会发生变化。DMSO-醇氢键二聚体是混合物中的主要物种。模拟数据和实验数据的直接比较为二元混合物的结构性质提供了更深入的见解。