Wald Christian, Goldbart Paul M, Zippelius Annette
Institut für Theoretische Physik, Georg-August-Universität Göttingen, Friedrich-Hund-Platz 1, 37077 Göttingen.
J Chem Phys. 2006 Jun 7;124(21):214905. doi: 10.1063/1.2200697.
We consider a microscopic model of a polymer blend that is prone to phase separation. Permanent cross-links are introduced between randomly chosen pairs of monomers, drawn from the Deam-Edwards distribution. Thereby, not only density but also concentration fluctuations of the melt are quenched-in in the gel state, which emerge upon sufficient cross-linking. We derive a Landau expansion in terms of the order parameters for gelation and phase separation, and analyze it on the mean-field level, including Gaussian fluctuations. The mixed gel is characterized by thermal as well as time-persistent (glassy) concentration fluctuations. Whereas the former are independent of the preparation state, the latter reflect the concentration fluctuations at the instant of cross-linking, provided the mesh size is smaller than the correlation length of phase separation. The mixed gel becomes unstable to microphase separation upon lowering the temperature in the gel phase. Whereas the length scale of microphase separation is given by the mesh size, at least close to the transition, the emergent microstructure depends on the composition and compressibility of the melt. Hexagonal structures, as well as lamellas or random structures with a unique wavelength, can be energetically favorable.
我们考虑一种易于相分离的聚合物共混物的微观模型。从迪姆 - 爱德华兹分布中随机选择单体对,并在它们之间引入永久交联。由此,不仅熔体的密度波动,而且浓度波动在凝胶状态下也被淬灭,这种凝胶状态在足够的交联后出现。我们根据凝胶化和相分离的序参量推导了朗道展开式,并在平均场水平上进行分析,包括高斯涨落。混合凝胶的特征在于热的以及时间持久(玻璃态)的浓度涨落。前者与制备状态无关,而后者反映交联瞬间的浓度涨落,前提是网孔尺寸小于相分离的关联长度。在凝胶相中降低温度时,混合凝胶会对微相分离变得不稳定。虽然微相分离的长度尺度由网孔尺寸给出,至少在接近转变时如此,但出现的微观结构取决于熔体的组成和压缩性。六边形结构以及具有独特波长的片层或随机结构在能量上可能是有利的。