Formation of molecular complexes of salicylic acid, acetylsalicylic acid, and methyl salicylate in a mixture of supercritical carbon dioxide with a polar cosolvent

被引:0
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作者
V. E. Petrenko
M. L. Antipova
D. L. Gurina
E. G. Odintsova
机构
[1] Russian Academy of Sciences,Krestov Institute of Solution Chemistry
[2] Ivanovo State University of Chemistry and Technology,undefined
来源
Russian Journal of Physical Chemistry A | 2015年 / 89卷
关键词
salicylic acid; acetylsalicylic acid; methyl salicylate; supercritical carbon dioxide; polar cosolvent; molecular dynamics; hydrogen bond;
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学科分类号
摘要
The solvate structures formed by salicylic acid, acetylsalicylic acid, and methyl salicylate in supercritical (SC) carbon dioxide with a polar cosolvent (methanol, 0.03 mole fractions) at a density of 0.7 g/cm3 and a temperature of 318 K were studied by the molecular dynamics method. Salicylic and acetylsalicylic acids were found to form highly stable hydrogen-bonded complexes with methanol via the hydrogen atom of the carboxyl group. For methyl salicylate in which the carboxyl hydrogen is substituted by a methyl radical, the formation of stable hydrogen bonds with methanol was not revealed. The contribution of other functional groups of the solute to the interactions with the cosolvent was much smaller. An analysis of correlations between the obtained data and the literature data on the cosolvent effect on the solubility of the compounds in SC CO2 showed that the dissolving ability of SC CO2 with respect to a polar organic substance in the presence of a cosolvent increased only when stable hydrogen-bonded complexes are formed between this substance and the cosolvent.
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页码:1389 / 1395
页数:6
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