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首页> 外文期刊>Biophysical Chemistry: An International Journal Devoted to the Physical Chemistry of Biological Phenomena >Modeling Gibbs energies of solution for a non-polar solute in aqueous solutions of the protein stabilizers glycerol and ethylene glycol.
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Modeling Gibbs energies of solution for a non-polar solute in aqueous solutions of the protein stabilizers glycerol and ethylene glycol.

机译:模拟蛋白质稳定剂甘油和乙二醇水溶液中非极性溶质的溶液吉布斯能。

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The Hydration Shell Chemical Equilibrium Model (HSCE) has been applied to Gibbs energies of solution data for toluene in aqueous solutions of the protein stabilizers glycerol and ethylene glycol. The HSCE model fits the experimental data to nearly experimental uncertainty. This satisfactory rendering of the data provides certainty on the physical significance of the model parameters and allows a description, from the molecular point of view, of the behaviour of a non-polar solute in aqueous solutions of protein stabilizers. The toluene-stabilizer interchange energy is positive indicating a dislike between toluene and the stabilizer molecules. This dislike is, however, much less pronounced than that between the solute and water, i.e. the non-polar solute prefers to be in contact with the stabilizer rather than with water. The cohesion between water molecules is much larger than that between stabilizer molecules and it remains to be the dominant cause of the hydrophobic behaviour of the non-polar solute.Since the solute-stabilizer interactions are energetically favoured over the solute-water ones, in the vicinity of the solute the stabilizer molecules are preferred over water ones. However, there is no specific interaction leading to a distinct chemical entity (a solute-stabilizer complex). Thus, the non-polar solute-stabilizer interaction is better described by the term 'preferential solvation of the solute by the stabilizer'.
机译:水合壳化学平衡模型(HSCE)已应用于蛋白质稳定剂甘油和乙二醇水溶液中甲苯的溶液数据的吉布斯能。 HSCE模型将实验数据拟合到接近实验不确定性。数据的这种令人满意的呈现提供了模型参数的物理重要性的确定性,并允许从分子的角度描述蛋白质稳定剂水溶液中非极性溶质的行为。甲苯-稳定剂交换能为正,表明甲苯和稳定剂分子之间不相似。然而,这种不喜欢比溶质和水之间的不那么明显,即,非极性溶质更优选与稳定剂接触而不是与水接触。水分子之间的内聚力远大于稳定剂分子之间的内聚力,仍然是非极性溶质疏水行为的主要原因。由于溶质-稳定剂之间的相互作用在能量上优于溶质-水之间的相互作用。在溶质附近,稳定剂分子优于水。但是,没有特定的相互作用导致不同的化学实体(溶质稳定剂络合物)。因此,通过术语“稳定剂对溶质的优先溶剂化”可以更好地描述非极性溶质与稳定剂的相互作用。

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