Chik John, Mizrahi Shimon, Chi Sulene, Parsegian V Adrian, Rau Donald C
Laboratory of Physical and Structural Biology, National Institute of Child Health and Human Development, National Institutes of Health, Bethesda, Maryland 20892-0924, USA.
J Phys Chem B. 2005 May 12;109(18):9111-8. doi: 10.1021/jp046999k.
The distance dependence for the preferential exclusion of several salts and neutral solutes from hydroxypropyl cellulose (HPC) has been measured via the effect of these small molecules on the thermodynamic forces between HPC polymers in ordered arrays. The concentration of salts and neutral solutes decreases exponentially as the spacing between apposing nonpolar HPC surfaces decreases. For all solutes, the spatial decay lengths of this exclusion are remarkably similar to those observed between many macromolecules at close spacings where intermolecular forces have been ascribed to the energetics of water structuring. Exclusion magnitudes depend strongly on the nature and size of the particular salt or solute; for the three potassium salts studied, exclusion follows the anionic Hofmeister series. The change in the number of excess waters associated with HPC polymers is independent of solute concentration suggesting that the dominating interactions are between solutes and the hydrated polymer. These findings further confirm the importance of solvation interactions and reveal an unexpected unity of Hofmeister effects, preferential hydration, and hydration forces.
通过这些小分子对有序排列的羟丙基纤维素(HPC)聚合物之间热力学力的影响,测量了几种盐和中性溶质从HPC中优先排除的距离依赖性。随着相对的非极性HPC表面之间间距减小,盐和中性溶质的浓度呈指数下降。对于所有溶质,这种排除的空间衰减长度与在近距离的许多大分子之间观察到的非常相似,在近距离时分子间力归因于水结构的能量学。排除幅度强烈依赖于特定盐或溶质的性质和大小;对于所研究的三种钾盐,排除遵循阴离子霍夫迈斯特序列。与HPC聚合物相关的过量水分子数量的变化与溶质浓度无关,这表明主要相互作用发生在溶质和水合聚合物之间。这些发现进一步证实了溶剂化相互作用的重要性,并揭示了霍夫迈斯特效应、优先水合作用和水合力之间意想不到的一致性。