首页> 外文期刊>The Journal of Supercritical Fluids >A study of solvation of o-/m-hydroxybenzoic acid in supercritical CO2-methanol co-solvent system based on intermolecular interaction by molecular dynamics simulation
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A study of solvation of o-/m-hydroxybenzoic acid in supercritical CO2-methanol co-solvent system based on intermolecular interaction by molecular dynamics simulation

机译:基于分子间相互作用的超临界CO2-甲醇共溶剂体系中邻/间羟基苯甲酸的溶剂化研究

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摘要

Solvation behavior of o-hydroxybenzoic acid (o-HBA) and m-hydroxybenzoic acid (m-HBA) in CO2 and methanol mixtures was investigated by molecular dynamics simulation. The results indicated that the distribution of methanol around o-, m-HBA molecules was different, and it was ascribed to the different hydrogen bonding numbers formed between methanol and HBA molecules. Moreover, the interaction or hydrogen bonds between m-HBA and methanol was much stronger than that between o-HBA and methanol, and with the increasing of CO2 pressure, it did not change for the former, but decreased for the latter. In addition, the local mole fraction enhancement was also studied. It was demonstrated that the methanol molecules become less aggregate with increasing CO2 pressure.
机译:通过分子动力学模拟研究了邻羟基苯甲酸(o-HBA)和间羟基苯甲酸(m-HBA)在二氧化碳和甲醇混合物中的溶剂化行为。结果表明,甲醇在邻-,间-HBA分子周围的分布是不同的,这归因于甲醇与HBA分子之间形成的氢键数不同。而且,间-HBA与甲醇之间的相互作用或氢键比邻-HBA与甲醇之间的相互作用或氢键强得多,并且随着CO 2压力的增加,前者没有改变,但后者降低了。另外,还研究了局部摩尔分数的提高。结果表明,随着CO2压力的增加,甲醇分子的聚集度降低。

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