首页> 外文期刊>The journal of physical chemistry, B. Condensed matter, materials, surfaces, interfaces & biophysical >Mechanism of Hydrotropic Action of Hydrotrope Sodium Cumene Sulfonate on the Solubility of Di-t-Butyl-Methane: A Molecular Dynamics Simulation Study
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Mechanism of Hydrotropic Action of Hydrotrope Sodium Cumene Sulfonate on the Solubility of Di-t-Butyl-Methane: A Molecular Dynamics Simulation Study

机译:水溶助溶剂异丙苯磺酸钠的水溶作用机理对二叔丁基甲烷溶解度的分子动力学模拟研究

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Hydrotropes are special class of amphiphilic molecules that have an ability to solubilize the insoluble or sparingly soluble molecules in water. To find out the mechanism of hydrotropic action of hydrotropes on hydrophobic molecules, we have carried out classical molecular dynamics simulation of hydrophobic solute di-t-butyl-methane (DTBM) and hydrotrope sodium cumene sulfonate (SCS) in water with a regime of SCS concentrations. Our study demonstrates that, above the minimum hydrotrope concentration (MHC), the self-aggregation of SCS starts, and it creates a micellar-like environment in which the hydrophobic tail part of SCS points inward while its hydrophilic sulfonate group points outward to make favorable contact with water molecules. The formation of the hydrophobic core of SCS cluster creates a hydrophobic environment where the hydrophobic DTBM molecules are encapsulated. Interestingly, the determination of average water-SCS hydrogen bonds further suggests that the aggregate formation of SCS molecules has a negligible influence on it. Moreover, the calculations of Flory-Huggins interaction parameters also reveal favorable interactions between hydrotrope SCS and solute DTBM molecules. The implications of these findings on the mechanism of hydrotrope assisted enhanced solubility of hydrophobic molecules are discussed.
机译:水溶助长剂是一类特殊的两亲分子,能够溶解水中的不溶或微溶分子。为了找出水溶助长剂对疏水分子的水溶作用机理,我们采用SCS方案对水中的疏水性溶质二叔丁基甲烷(DTBM)和水溶助长异丙基磺酸钠(SCS)进行了经典的分子动力学模拟。浓度。我们的研究表明,在最小水溶助长剂浓度(MHC)以上,SCS会开始自聚集,并形成胶束状环境,其中SCS的疏水尾部向内指向,而其亲水性磺酸盐基团向外侧指向以形成有利的胶束状态。与水分子接触。 SCS簇的疏水核的形成创造了一个疏水性环境,其中疏水性DTBM分子被包裹起来。有趣的是,平均水-SCS氢键的测定进一步表明,SCS分子的聚集体形成对其影响可忽略不计。此外,Flory-Huggins相互作用参数的计算也揭示了水溶助​​长剂SCS与溶质DTBM分子之间的有利相互作用。讨论了这些发现对水溶助长的疏水分子增溶机理的影响。

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