Department of Chemistry, Faculty of Science, University of Malaya, 50603 Kuala Lumpur, Malaysia.
J Phys Chem B. 2013 Jun 20;117(24):7335-44. doi: 10.1021/jp401787b. Epub 2013 Jun 11.
We have investigated the phase behavior of four glycosides (βC8OGlc, βC8SGlc, βC10OGlc, βC8OGal) in water and D2O by optical polarizing microscopy and deuterium NMR. Previously published phase diagrams were evaluated by deuterium NMR, via monitoring D2O spectra, and confirmed the presence of the hexagonal, bicontinuous cubic, and lamellar phases in these glycosides. We have also shown the presence of the gel phase in (βC10OGlc) and observed the extensive supercooling of the lamellar phase to temperatures well below the Kraft line. While the main features of the phase diagrams were confirmed, some phase boundaries were found to be slightly different. Magnetically aligned spectra were also observed for relatively dilute samples for the hexagonal phase (βC8OGlc and βC8OGal) and the lamellar phase (βC8SGlc and βC10OGlc). The average number of bound water molecules per headgroup in the lamellar phase for the glycosides was determined by the systematic measurement of the quadrupolar splitting of D2O over a wide range of values of the (glycoside/water) molar ratio. The number of water molecules bound to the headgroup was found on average to be about 1.6-1.7 water molecules with no significant differences in this value for the different glycosides (and over the temperature range investigated), indicating that the bound water content is predominately influenced by the number of hydroxyl groups of the headgroup only. However, this bound water content of only 1.6-1.7 water molecules per sugar headgroup is surprisingly low, suggesting strong intermolecular interactions of the OH groups of headgroup sugars. The results are in line with computational results reported earlier for the octyl-β-glucoside and β-galactoside, which show the presence of strong intralayer hydrogen bonding.
我们通过偏光显微镜和氘核 NMR 研究了四种糖苷(βC8OGlc、βC8SGlc、βC10OGlc、βC8OGal)在水和 D2O 中的相行为。通过监测 D2O 谱,利用氘核 NMR 对先前发表的相图进行了评估,并证实了这些糖苷中存在六方相、双连续立方相和层状相。我们还证明了(βC10OGlc)中存在凝胶相,并观察到层状相的过冷范围很宽,温度远低于 Kraft 线。虽然相图的主要特征得到了确认,但发现一些相界略有不同。对于六方相(βC8OGlc 和 βC8OGal)和层状相(βC8SGlc 和 βC10OGlc),相对稀溶液也观察到了磁化排列的谱。通过在糖苷/水摩尔比的宽范围内系统测量 D2O 的四极分裂,确定了层状相中每个糖基头部结合的水分子的平均数量。发现与头部结合的水分子的平均数量约为 1.6-1.7 个水分子,不同糖苷之间(以及在所研究的温度范围内)该值没有显著差异,这表明结合水含量主要受头部羟基数量的影响。然而,每个糖基头部结合的水分子数量仅为 1.6-1.7 个水分子,这令人惊讶地低,表明头部糖的 OH 基团之间存在强烈的分子间相互作用。这些结果与早些时候报道的辛基-β-葡糖苷和 β-半乳糖苷的计算结果一致,表明存在强烈的层内氢键。