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水-乙醇溶液的拉曼光谱:氢键能的估算及溶液中笼状结构的出现

Raman Spectroscopy of Water-Ethanol Solutions: The Estimation of Hydrogen Bonding Energy and the Appearance of Clathrate-like Structures in Solutions.

作者信息

Dolenko Tatiana A, Burikov Sergey A, Dolenko Sergey A, Efitorov Alexander O, Plastinin Ivan V, Yuzhakov Viktor I, Patsaeva Svetlana V

机构信息

Department of Physics and ‡D. V. Skobeltsyn Institute of Nuclear Physics, M. V. Lomonosov Moscow State University , Moscow 119991, Russia.

出版信息

J Phys Chem A. 2015 Nov 5;119(44):10806-15. doi: 10.1021/acs.jpca.5b06678. Epub 2015 Oct 26.

Abstract

The structure of aqueous alcohol solutions at the molecular level for many decades has remained an intriguing topic in numerous theoretical and practical investigations. The aberrant thermodynamic properties of water-alcohol mixtures are believed to be caused by the differences in energy of hydrogen bonding between water-water, alcohol-alcohol, and alcohol-water molecules. We present the Raman scattering spectra of water, ethanol, and water-ethanol solutions with 20 and 70 vol % of ethanol thoroughly measured and analyzed at temperatures varying from -10 to +70 °C. Application of the MCR-ALS method allowed for each spectrum to extract contributions of molecules with different strengths of hydrogen bonding. The energy (enthalpy) of formation/weakening of hydrogen bonds was calculated using the slope of Van't Hoff plot. The energy of hydrogen bonding in 20 vol % of ethanol was found the highest among all the samples. This finding further supports appearance of clathrate-like structures in water-ethanol solutions with concentrations around 20 vol % of ethanol.

摘要

几十年来,水醇溶液在分子水平上的结构一直是众多理论和实际研究中一个引人入胜的话题。水 - 醇混合物异常的热力学性质被认为是由水分子 - 水分子、醇分子 - 醇分子以及醇分子 - 水分子之间氢键能量的差异所导致的。我们展示了水、乙醇以及乙醇体积分数分别为20%和70%的水 - 乙醇溶液在 -10至 +70 °C温度范围内的拉曼散射光谱,并进行了全面的测量和分析。应用MCR - ALS方法能够从每个光谱中提取出具有不同氢键强度的分子的贡献。利用范特霍夫图的斜率计算了氢键形成/减弱的能量(焓)。发现在所有样品中,乙醇体积分数为20%时的氢键能量最高。这一发现进一步支持了在乙醇体积分数约为20%的水 - 乙醇溶液中出现笼状结构的观点。

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