Buttersack Christoph
Institute for Non-classical Chemistry at the University of Leipzig, Permoserstr. 15, 04318 Leipzig, Germany.
Carbohydr Res. 2017 Jun 29;446-447:101-112. doi: 10.1016/j.carres.2017.04.019. Epub 2017 Apr 27.
The hydrophobic interaction of carbohydrates and other hydroxy compounds with a C18-modified silica gel column was measured with pure water as eluent, thereby expanding the range of measurements already published. The interaction is augmented by structure strengthening salts and decreasing temperature. Although the interaction of the solute with the hydrophobic interface is expected to only imperfectly reflect its state in aqueous bulk solution, the retention can be correlated to hydration numbers calculated from molecular mechanics studies given in the literature. No correlation can be established towards published hydration numbers obtained by physical methods (isentropic compressibility, O-17 NMR relaxation, terahertz spectroscopy, and viscosity). The hydrophobicity is discussed with respect to the chemical structure. It increases with the fraction and size of hydrophobic molecular surface regions.
以纯水为洗脱剂,测定了碳水化合物和其他羟基化合物与C18修饰硅胶柱的疏水相互作用,从而扩展了已发表的测量范围。结构强化盐和降低温度会增强这种相互作用。尽管溶质与疏水界面的相互作用预计只能不完全反映其在本体水溶液中的状态,但保留率可以与根据文献中分子力学研究计算出的水合数相关联。与通过物理方法(等熵压缩性、O-17 NMR弛豫、太赫兹光谱和粘度)获得的已发表水合数无法建立相关性。从化学结构方面讨论了疏水性。它随着疏水分子表面区域的比例和大小而增加。