Archer A J, Schmidt M, Evans R
H.H. Wills Physics Laboratory, University of Bristol, Tyndall Avenue, Bristol BS8 1TL, United Kingdom.
Phys Rev E Stat Nonlin Soft Matter Phys. 2006 Jan;73(1 Pt 1):011506. doi: 10.1103/PhysRevE.73.011506. Epub 2006 Jan 30.
We present a density-functional study of a binary phase-separating mixture of soft core particles immersed in a random matrix of quenched soft core particles of larger size. This is a model for a binary polymer mixture immersed in a cross-linked rigid polymer network. Using the replica "trick" for quenched-annealed mixtures we derive an explicit density functional theory that treats the quenched species on the level of its one-body density distribution. The relation to a set of effective external potentials acting on the annealed components is discussed. We relate matrix-induced condensation in bulk to the behavior of the mixture around a single large particle. The interfacial properties of the binary mixture at a surface of the quenched matrix display a rich interplay between capillary condensation inside the bulk matrix and wetting phenomena at the matrix surface.
我们展示了对一种二元相分离混合物的密度泛函研究,该混合物由沉浸在尺寸较大的淬火软核粒子随机矩阵中的软核粒子组成。这是一个二元聚合物混合物沉浸在交联刚性聚合物网络中的模型。使用针对淬火退火混合物的复本“技巧”,我们推导出了一种显式密度泛函理论,该理论在单粒子密度分布层面处理淬火物种。讨论了与作用在退火组分上的一组有效外势的关系。我们将体相中的基质诱导凝聚与混合物在单个大粒子周围的行为联系起来。淬火基质表面处二元混合物的界面性质在体相基质内部的毛细管凝聚和基质表面的润湿现象之间展现出丰富的相互作用。