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Integral equation study of hydrophobic interaction:A comparison between the simple point charge model for water and a Lennard-Jones model for solvent

机译:疏水相互作用的积分方程研究:水的简单点电荷模型与溶剂的Lennard-Jones模型之间的比较

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摘要

The hydrophobic interaction that is characterized by a potential of mean force(PMF)between spherical apolar solutes immersed in the simple point charge(SPCE)model for water was studied using an interaction site model integral equation based on a density-functional theory for molecular fluids.For comparison with the PMFs for various size solutes in the SPCE model,the PMFs in a Lennard-Jones(LJ)model for a solvent whose diameter is same as the SPCE model were also studied using a hypernetted chain integral equation.It is noted in the LJ model that the hydrogen bond and its network structure are completely ignored,but the translational entropy is taken into account.Both PMFs obtained from the SPCE model and from the LJ model have a large first minimum at a contact distance of solutes.In the case that the solute size is about three times larger than water,these PMFs also have a large maximum at a longer distance than the contact position.The strong attraction is attributed to the translational entropy of the solvent,and that the large activation barrier is arising from the weak attraction between the solute and the solvent.The comparison between the SPCE model and the LJ solvent model suggests that the qualitative description of the hydrophobic interaction is possible by using the LJ solvent model.On the other hand,the dewetting tendency on the surface of the apolar solute in a room condition is observed only on the SPCE model.These results indicate that the characteristics of water such as the hydrogen bond affect rather the hydrophobic hydration than the hydrophobic interaction.
机译:基于分子流体的密度泛函理论,利用相互作用位点模型积分方程研究了球形非极性溶质在水的单点电荷(SPCE)模型中的平均力(PMF)势能之间的疏水相互作用。为了与SPCE模型中各种尺寸溶质的PMF进行比较,还使用超网状链积分方程研究了Lennard-Jones(LJ)模型中直径与SPCE模型相同的溶剂中的PMF。在LJ模型中,氢键及其网络结构被完全忽略,但考虑了平移熵。从SPCE模型和LJ模型获得的PMF在溶质的接触距离处均具有较大的第一最小值。如果溶质的大小是水的三倍,那么这些PMF在比接触位置更长的距离处也具有较大的最大值。 SPCE模型和LJ溶剂模型之间的比较表明,通过使用溶剂可以定性描述疏水相互作用,这是溶剂的整体熵,并且大的活化势垒是由于溶质和溶剂之间的弱吸引而引起的。 LJ溶剂模型。另一方面,仅在SPCE模型上观察到室温下非极性溶质表面的去湿趋势。这些结果表明水的特性(例如氢键)对疏水水合的影响远大于对疏水水合的影响。疏水相互作用。

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