首页> 外文期刊>The journal of physical chemistry, B. Condensed matter, materials, surfaces, interfaces & biophysical >Solvation of the Amphiphilic Diol Molecule in Aliphatic Alcohol-Water and Fluorinated Alcohol-Water Solutions
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Solvation of the Amphiphilic Diol Molecule in Aliphatic Alcohol-Water and Fluorinated Alcohol-Water Solutions

机译:两性二元分子在脂肪醇水溶液和氟化醇水溶液中的溶剂化

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摘要

We investigated the solvation properties of aqueous solutions of aliphatic alcohols and fluorinated alcohols. These included ethanol (EtOH), 2-propanol (2-PrOH), 2,2,2-trifluoroethanol (TFE), and 1,1,1,3,3,3-hexafluoro-2-propanol (HFIP). The amphiphilic diol, 1,4-pentanediol (1,4-PD), was used as the solute to probe solvation properties at the molecular level. Small-angle neutron scattering (SANS) experiments revealed that the inherent microheterogeneity of HFIP-water binary solutions was significantly enhanced by addition of 1,4-PD. In contrast, the addition of 1,4-PD to EtOH-, 2-PrOH-, and TFE-water solutions hardly changed the mixing state. Molecular dynamics simulations were used to obtain the spatial distribution functions for the oxygen atom of water molecules and the carbon and fluorine atoms of alcohol molecules around 1,4-PD. Of the alcohols studied, these spatial distributions illustrated that HFIP molecules formed the strongest hydrophobic solvation shell around the hydrocarbons of 1,4-PD. This preferential solvation of 1,4-PD by HFIP leads to enhancement of HFIP clusters in the solutions. ~(13)C NMR and infrared spectroscopic measurements on 1,4-PD in the different alcohol-water solutions suggested that the number of water molecules around the hydrocarbons of 1,4-PD decreased in aliphatic alcohol-water solutions. Additionally, HFIP molecules are thought to strongly interact with the hydrocarbons of 1,4-PD in HFIP-water solutions.
机译:我们研究了脂族醇和氟化醇水溶液的溶剂化性能。这些包括乙醇(EtOH),2-丙醇(2-PrOH),2,2,2-三氟乙醇(TFE)和1,1,1,3,3,3-六氟-2-丙醇(HFIP)。使用两亲性二醇1,4-戊二醇(1,4-PD)作为溶质,在分子水平上探讨溶剂化性能。小角度中子散射(SANS)实验表明,HFIP-水二元溶液的固有微异质性通过添加1,4-PD得以显着增强。相反,在EtOH-,2-PrOH-和TFE-水溶液中添加1,4-PD几乎不会改变混合状态。分子动力学模拟被用来获得水分子中氧原子和1,4-PD周围醇分子的碳和氟原子的空间分布函数。在所研究的醇中,这些空间分布说明HFIP分子在1,4-PD烃周围形成最强的疏水溶剂化壳。 HFIP对1,4-PD的优先溶剂化导致溶液中HFIP簇的增强。在不同的醇-水溶液中对1,4-PD的〜(13)C NMR和红外光谱测量表明,在脂肪族醇-水溶液中,1,4-PD烃周围的水分子数量减少。另外,认为HFIP分子与HFIP水溶液中的1,4-PD的烃类发生强烈相互作用。

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