Choudhury Niharendu, Pettitt B Montgomery
Department of Chemistry, University of Houston, Houston, Texas 77204-5003, USA.
J Phys Chem B. 2006 Apr 27;110(16):8459-63. doi: 10.1021/jp056909r.
Entropic and enthalpic contributions to the hydrophobic interaction between nanoscopic hydrophobic solutes, modeled as graphene plates in water, have been calculated using molecular dynamics simulations in the isothermal-isobaric (NPT) ensemble with free energy perturbation methodology. We find the stabilizing contribution to the free energy of association (contact pair formation) to be the favorable entropic part, the enthalpic contribution being highly unfavorable. The desolvation barrier is dominated by the unfavorable enthalpic contribution, despite a fairly large favorable entropic compensation. The enthalpic contributions, incorporating the Lennard-Jones solute-solvent terms, largely determine the stability of the solvent separated configuration. We decompose the enthalpy into a direct solute-solute term, the solute-solvent interactions, and the remainder that contains pressure-volume work as well as contributions due to solvent reorganization. The enthalpic contribution due to changes in water-water interactions arising from solvent reorganization around the solute molecules is shown to have major contribution in the solvent induced enthalpy change.
利用等温等压(NPT)系综中的分子动力学模拟和自由能微扰方法,计算了作为水中石墨烯片建模的纳米级疏水溶质之间疏水相互作用的熵和焓贡献。我们发现,对缔合自由能(接触对形成)的稳定贡献是有利的熵部分,焓贡献则非常不利。尽管有相当大的有利熵补偿,但去溶剂化势垒仍由不利的焓贡献主导。包含 Lennard-Jones 溶质 - 溶剂项的焓贡献在很大程度上决定了溶剂分离构型的稳定性。我们将焓分解为直接的溶质 - 溶质项、溶质 - 溶剂相互作用以及包含压力 - 体积功以及溶剂重组贡献的其余部分。结果表明,溶质分子周围溶剂重组引起的水 - 水相互作用变化所导致的焓贡献在溶剂诱导的焓变中起主要作用。