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Raman spectroscopy of aqueous methanol solutions under pressure

机译:压力下甲醇水溶液的拉曼光谱

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Recently, Dixit et al. (2002) used neutron diffraction to probe the molecular-scale structure of a concentrated methanol-water mixture (7:3 molar ratio) under ambient conditions. Their results suggest that the anomalous thermodynamics of water-alcohol systems arises from incomplete mixing at the molecular level, i.e. most of the water molecules exist as small hydrogen-bonded strings and clusters in a fluid of close-packed methyl groups. The application of high hydrostatic pressure together with Raman spectroscopy is a powerful technique to detect such structural changes in associated systems. In this work, we present measurements of Raman spectra of water-methanol mixtures under pressure at room temperature. We have used an anvil cell device with sapphire anvils to generate pressures up to 10 kbar. Our results allow us to suggest important changes on the cluster distribution as a function of pressure.
机译:最近,Dixit等人。 (2002)使用中子衍射在环境条件下探测浓缩甲醇 - 水混合物(7:3摩尔比)的分子尺度结构。它们的结果表明,水 - 醇系统的异常热力学从分子水平处不完全混合,即大多数水分子作为小的氢键串和封闭甲基流体中的簇存在。高静压压力与拉曼光谱一起应用是一种能够检测相关系统中这种结构变化的强大技术。在这项工作中,我们在室温下呈现水 - 甲醇混合物的拉曼光谱的测量。我们使用了具有蓝宝石砧座的砧座电池设备,以产生高达10 kbar的压力。我们的结果允许我们在压力函数中表明集群分布的重要变化。

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