LMAM and School of Mathematical Sciences, Peking University, Beijing 100871, China.
J Phys Chem B. 2013 May 2;117(17):5296-305. doi: 10.1021/jp309862b. Epub 2013 Apr 17.
Block copolymers with their rich phase behavior and ordering transitions have become a paradigm for the study of structured soft materials. A major challenge in the study of the phase behavior of block copolymers is to obtain different stable and metastable phases of the system. A strategy to discover complex ordered phases of block copolymers within the self-consistent field theory framework is developed by a combination of fast algorithms and novel initialization procedures. This strategy allows the generation of a large number of candidate structures, which can then be used to construct phase diagrams. Application of the strategy is illustrated using ABC star triblock copolymers as an example. A large number of candidate structures, including many three-dimensionally ordered phases, of the system are obtained and categorized. A phase diagram is constructed for symmetrically interacting ABC star triblock copolymers.
具有丰富相行为和有序转变的嵌段共聚物已成为研究结构化软物质的范例。研究嵌段共聚物相行为的主要挑战是获得系统的不同稳定和亚稳相。通过快速算法和新颖的初始化程序相结合,开发了一种在自洽场理论框架内发现嵌段共聚物复杂有序相的策略。该策略允许生成大量候选结构,然后可以使用这些结构来构建相图。使用 ABC 星形嵌段共聚物作为示例说明了该策略的应用。获得并分类了该系统的大量候选结构,包括许多三维有序相。为对称相互作用的 ABC 星形嵌段共聚物构建了相图。