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首页> 外文期刊>The Journal of Chemical Physics >AN INVESTIGATION OF THE INFLUENCE OF SOLUTE SIZE AND INSERTION CONDITIONS ON SOLVATION THERMODYNAMICS
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AN INVESTIGATION OF THE INFLUENCE OF SOLUTE SIZE AND INSERTION CONDITIONS ON SOLVATION THERMODYNAMICS

机译:溶质的大小和插入条件对溶剂化热力学影响的研究

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In this paper we examine the influence of solute size and insertion conditions on solvent structural changes and excess thermodynamic properties in the infinite dilution limit. A general integral equation approach which can be applied under arbitrary conditions is given and isothermal-isochoric and isothermal-isobaric insertions are discussed in detail. Scaling relationships valid in the large solute limit are determined for both structural and thermodynamic properties. This is done by considering macroscopic thermodynamic relationships and explicit evaluation of low solvent density expansions of pair correlation functions. The hypernetted-chain and reference hypernetted-chain closure approximations are used to obtain numerical results for the insertion of hard sphere solutes of varying diameter into hard sphere, dipolar hard sphere and water-like solvents. The results obtained give a good deal of insight into the nature of solvation of inert solutes. It is shown that for all three solvents the excess properties are very well represented by a function obtained by summing terms proportional to the solute volume, surface area and diameter. One would expect such a result for large solutes, but here we show that this expression extrapolates all the way down to solutes comparable in size to the solvent particles. Further, it is shown that both the numerical value, and, more importantly, the physical interpretation of the excess thermodynamic properties strongly depend on the insertion conditions. Under all insertion conditions the chemical potential is a local property in the sense that it is completely determined by solute-solvent correlations which are important only in the immediate vicinity of the solute. However, this is not true of the excess energy, enthalpy and entropy which all contain nonlocal contributions arising essentially from changes in the actual or effective solvent density depending on the insertion conditions. We demonstrate that the nonlocal contributions can be very significant and therefore the excess energies, enthalpies and entropies often cannot provide useful information about solvent structure near solutes. This has significant implications for models which attempt to rationalize excess thermodynamics in terms of local solvent structure in the vicinity of solute particles. (C) 1997 American Institute of Physics. [References: 52]
机译:在本文中,我们研究了溶质尺寸和插入条件对溶剂结构变化和无限稀释极限下过量热力学性质的影响。给出了可以在任意条件下应用的一般积分方程方法,并详细讨论了等温等静压和等温等压插入。对于结构和热力学性质,都确定了在大溶质限度内有效的比例关系。这是通过考虑宏观热力学关系和对相关函数的低溶剂密度扩展的显式评估来完成的。使用超网链和参考超网链闭合近似来获得将直径不同的硬球溶质插入硬球,偶极硬球和水状溶剂中的数值结果。获得的结果提供了对惰性溶质溶剂化性质的大量见解。结果表明,对于所有三种溶剂,多余的特性都可以很好地表示出来,该函数是通过将与溶质体积,表面积和直径成比例的项相加而获得的。人们可能希望对大溶质得到这样的结果,但是在这里,我们证明了这种表达方式一直向下推断到大小与溶剂颗粒相当的溶质。此外,还表明,数值以及更重要的是,对过量热力学性质的物理解释在很大程度上取决于插入条件。在所有插入条件下,化学势都是局部性质,因为它完全由溶质与溶剂的相关性决定,而溶质与溶剂的相关性仅在溶质的紧邻区域才重要。然而,对于过量能量,焓和熵而言,事实并非如此,这些能量,焓和熵都包含非局部贡献,该非局部贡献主要是由于实际或有效溶剂密度的变化而引起的,取决于插入条件。我们证明了非局部贡献可能非常重要,因此过量的能量,焓和熵通常无法提供有关溶质附近溶剂结构的有用信息。这对于试图根据溶质颗粒附近的局部溶剂结构合理化过量热力学的模型具有重要意义。 (C)1997美国物理研究所。 [参考:52]

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