Husowitz B, Talanquer V
Department of Chemistry, University of Arizona, Tucson, Arizona 85721, USA.
J Chem Phys. 2007 Feb 7;126(5):054508. doi: 10.1063/1.2432327.
Density functional theory is used to explore the solvation properties of a spherical solute immersed in a supercritical diatomic fluid. The solute is modeled as a hard core Yukawa particle surrounded by a diatomic Lennard-Jones fluid represented by two fused tangent spheres using an interaction site approximation. The authors' approach is particularly suitable for thoroughly exploring the effect of different interaction parameters, such as solute-solvent interaction strength and range, solvent-solvent long-range interactions, and particle size, on the local solvent structure and the solvation free energy under supercritical conditions. Their results indicate that the behavior of the local coordination number in homonuclear diatomic fluids follows trends similar to those reported in previous studies for monatomic fluids. The local density augmentation is particularly sensitive to changes in solute size and is affected to a lesser degree by variations in the solute-solvent interaction strength and range. The associated solvation free energies exhibit a nonmonotonous behavior as a function of density for systems with weak solute-solvent interactions. The authors' results suggest that solute-solvent interaction anisotropies have a major influence on the nature and extent of local solvent density inhomogeneities and on the value of the solvation free energies in supercritical solutions of heteronuclear molecules.
密度泛函理论用于探究浸没在超临界双原子流体中的球形溶质的溶剂化性质。溶质被建模为一个硬核 Yukawa 粒子,周围是由两个融合的相切球体表示的双原子 Lennard-Jones 流体,采用相互作用位点近似。作者的方法特别适合于深入探究不同相互作用参数,如溶质 - 溶剂相互作用强度和范围、溶剂 - 溶剂长程相互作用以及颗粒大小,对超临界条件下局部溶剂结构和溶剂化自由能的影响。他们的结果表明,同核双原子流体中局部配位数的行为遵循与先前单原子流体研究中报道的趋势相似的趋势。局部密度增加对溶质大小的变化特别敏感,而受溶质 - 溶剂相互作用强度和范围变化的影响较小。对于溶质 - 溶剂相互作用较弱的系统,相关的溶剂化自由能随密度呈现非单调行为。作者的结果表明,溶质 - 溶剂相互作用各向异性对异核分子超临界溶液中局部溶剂密度不均匀性的性质和程度以及溶剂化自由能的值有重大影响。