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首页> 外文期刊>Journal of pharmaceutical sciences. >The hydrophobic effect. 3. A key ingredient in predicting n-octanol-water partition coefficients.
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The hydrophobic effect. 3. A key ingredient in predicting n-octanol-water partition coefficients.

机译:疏水作用。 3.预测正辛醇-水分配系数的关键因素。

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The quantitative development of the mobile order theory in H-bonded liquids is extended to predict the n-octanol/water partition coefficient (P). The log P predictive equation strictly issued from a thermodynamic treatment reduces to a simple linear volume-log P relationship whose intercept and slope encode, respectively, the solvation and entropy effects. For noncomplexing substances, the partition coefficient values result from two volume-dependent entropic contributions reflecting (a) the difference in the exchange entropy between the solute and solvent molecules in the n-octanol and water phases, and (b) the propensity difference between the two H-bonded solvents to induce a hydrophobic effect toward the solute. Although both effects increase, although with opposite signs, compared with the growing molar volume of the partitioned compound, the hydrophobic contribution always predominates favoring the transfer of the solute into the organic phase and hence increasing its partition coefficient. When dealing with complexing chemicals, the hydrophobic effect-related term, though remaining the dominant factor in most cases, is more or less counterbalanced by the formation of H-bonds between the interacting sites of the solute and the n-octanol and water solvent molecules. The log P, corrected for the substantial content of water into n-octanol, is estimated for a number of compounds of environmental and pharmaceutical interest. The extent to which the entropic and enthalpic factors affect the overall partition coefficient value is analyzed.
机译:氢键液体中流动有序理论的定量发展被扩展到预测正辛醇/水分配系数(P)。严格由热力学处理得出的log P预测方程简化为简单的线性体积-log P关系,其截距和斜率分别编码溶剂化和熵效应。对于非复杂物质,分配系数值由两个体积相关的熵贡献得出,反映了(a)正辛醇和水相中溶质和溶剂分子之间的交换熵之差,以及(b)两者之间的倾向性差。两种氢键合溶剂诱导对溶质的疏水作用。尽管两种作用均增加,尽管具有相反的符号,但与分配的化合物的摩尔体积的增加相比,疏水作用始终占主导地位,有利于溶质向有机相的转移并因此增加其分配系数。当处理络合化学品时,与疏水作用有关的术语尽管在大多数情况下仍是主要因素,但在溶质与正辛醇和水溶剂分子的相互作用部位之间形成氢键或多或少地抵消了该作用。 。已对许多环境和医药方面感兴趣的化合物估算出经校正的log P(对正辛醇中的大量水进行了校正)。分析了熵和焓因素影响总分配系数值的程度。

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