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Structural properties of glucose-dimethylsulfoxide solutions probed by Raman spectroscopy

机译:拉曼光谱法检测葡萄糖-二甲亚砜溶液的结构性质

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Raman spectroscopy was employed to achieve a molecular level description of solvation properties in glucose-dimethylsulfoxide (DMSO) solutions. The analysis of Raman spectra confirms the importance of the dipole-dipole interaction in determining structural properties of pure DMSO; the overall intermolecular structure is maintained in the whole 20–75 °C temperature range investigated. The blueshift of the CH stretching modes observed at higher temperatures points out that CH_3…O contacts contribute to the cohesive energy of the DMSO liquid system. The addition of glucose perturbs the intermolecular ordering of DMSO owing to the formation of stable solute-solvent hydrogen bonds. The average number of OH…OS contacts (3.2±0.3) and their corresponding energy (~20 kJ/mol) were estimated. Besides, the concentration dependence of the CH stretching bands and the behavior of the noncoincidence effect on the SO band, suggest that the dipole-dipole and CH_3…O interactions among DMSO molecules are disfavored within the glucose solvation layer. These findings contribute to improve our understanding about the microscopic origin of solvent properties of DMSO toward more complex biomolecular systems.
机译:拉曼光谱法用于在葡萄糖-二甲基亚砜(DMSO)溶液中实现溶剂化性能的分子水平描述。拉曼光谱的分析证实了偶极-偶极相互作用在确定纯DMSO的结构性质中的重要性。在研究的整个20–75°C温度范围内,整个分子间结构均得到保持。在较高温度下观察到的CH拉伸模式的蓝移表明,CH_3…O接触有助于DMSO液体系统的内聚能。由于形成稳定的溶质-溶剂氢键,葡萄糖的加入扰乱了DMSO的分子间有序性。估计了OH…OS接触的平均数(3.2±0.3)及其相应的能量(〜20 kJ / mol)。此外,CH伸缩带的浓度依赖性和SO带的非巧合行为表明,DMSO分子之间的偶极-偶极和CH_3…O相互作用在葡萄糖溶剂化层内是不利的。这些发现有助于增进我们对DMSO的溶剂特性从微观角度向更复杂的生物分子系统的理解。

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