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模拟聚合物诱导的两个接枝表面之间的相互作用:界面统计缔合流体理论与自洽场理论的比较

Modeling polymer-induced interactions between two grafted surfaces: comparison between interfacial statistical associating fluid theory and self-consistent field theory.

作者信息

Jain Shekhar, Ginzburg Valeriy V, Jog Prasanna, Weinhold Jeffrey, Srivastava Rakesh, Chapman Walter G

机构信息

Department of Chemical and Biomolecular Engineering, Rice University, Houston, Texas 77005, USA.

出版信息

J Chem Phys. 2009 Jul 28;131(4):044908. doi: 10.1063/1.3177009.

Abstract

The interaction between two polymer grafted surfaces is important in many applications, such as nanocomposites, colloid stabilization, and polymer alloys. In our previous work [Jain et al., J. Chem. Phys. 128, 154910 (2008)], we showed that interfacial statistical associating fluid density theory (iSAFT) successfully calculates the structure of grafted polymer chains in the absence/presence of a free polymer. In the current work, we have applied this density functional theory to calculate the force of interaction between two such grafted monolayers in implicit good solvent conditions. In particular, we have considered the case where the segment sizes of the free (sigma(f)) and grafted (sigma(g)) polymers are different. The interactions between the two monolayers in the absence of the free polymer are always repulsive. However, in the presence of the free polymer, the force either can be purely repulsive or can have an attractive minimum depending upon the relative chain lengths of the free (N(f)) and grafted polymers (N(g)). The attractive minimum is observed only when the ratio alpha = N(f)/N(g) is greater than a critical value. We find that these critical values of alpha satisfy the following scaling relation: rho(g) square root(N(g)) beta(3) proportional to alpha(-lambda), where beta = sigma(f)/sigma(g) and lambda is the scaling exponent. For beta = 1 or the same segment sizes of the free and grafted polymers, this scaling relation is in agreement with those from previous theoretical studies using self-consistent field theory (SCFT). Detailed comparisons between iSAFT and SCFT are made for the structures of the monolayers and their forces of interaction. These comparisons lead to interesting implications for the modeling of nanocomposite thermodynamics.

摘要

两个聚合物接枝表面之间的相互作用在许多应用中都很重要,例如纳米复合材料、胶体稳定和聚合物合金。在我们之前的工作中[贾恩等人,《化学物理杂志》128, 154910 (2008)],我们表明界面统计缔合流体密度理论(iSAFT)成功地计算了在存在/不存在自由聚合物的情况下接枝聚合物链的结构。在当前工作中,我们应用这种密度泛函理论来计算在隐式良溶剂条件下两个这样的接枝单分子层之间的相互作用力。特别地,我们考虑了自由聚合物(σ(f))和接枝聚合物(σ(g))的链段尺寸不同的情况。在不存在自由聚合物时,两个单分子层之间的相互作用总是排斥的。然而,在存在自由聚合物的情况下,根据自由聚合物(N(f))和接枝聚合物(N(g))的相对链长,力要么可以是纯粹排斥的,要么可以有一个吸引最小值。只有当α = N(f)/N(g)的比值大于临界值时才会观察到吸引最小值。我们发现这些α的临界值满足以下标度关系:ρ(g)√(N(g))β(3) ∝ α^(-λ),其中β = σ(f)/σ(g),λ是标度指数。对于β = 1或自由聚合物和接枝聚合物链段尺寸相同的情况,这种标度关系与之前使用自洽场理论(SCFT)的理论研究结果一致。对iSAFT和SCFT在单分子层结构及其相互作用力方面进行了详细比较。这些比较对纳米复合热力学的建模产生了有趣的启示。

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