Xing Xiangjun, Pfahl Stephan, Mukhopadhyay Swagatam, Goldbart Paul M, Zippelius Annette
Physics Department, Syracuse University, Syracuse, New York 13244, USA.
Phys Rev E Stat Nonlin Soft Matter Phys. 2008 May;77(5 Pt 1):051802. doi: 10.1103/PhysRevE.77.051802. Epub 2008 May 8.
A Landau theory is constructed for the gelation transition in cross-linked polymer systems possessing spontaneous nematic ordering, based on symmetry principles and the concept of an order parameter for the amorphous solid state. This theory is substantiated with help of a simple microscopic model of cross-linked dimers. Minimization of the Landau free energy in the presence of nematic order yields the neoclassical theory of the elasticity of nematic elastomers and, in the isotropic limit, the classical theory of isotropic elasticity. These phenomenological theories of elasticity are thereby derived from a microscopic model, and it is furthermore demonstrated that they are universal mean-field descriptions of the elasticity for all chemical gels and vulcanized media.
基于对称性原理和非晶态固体状态序参量的概念,为具有自发向列相序的交联聚合物体系中的凝胶化转变构建了一种朗道理论。借助交联二聚体的简单微观模型对该理论进行了论证。在存在向列相序的情况下,使朗道自由能最小化可得到向列弹性体弹性的新古典理论,在各向同性极限下可得到各向同性弹性的经典理论。因此,这些弹性现象学理论是从微观模型推导出来的,并且进一步证明它们是所有化学凝胶和硫化介质弹性的通用平均场描述。