论文标题
块共聚物颗粒的过程定向的自组装
The Process-Directed Self-Assembly of Block Copolymer Particles
论文作者
论文摘要
使用动态自洽场理论(DSCFT)探索结构进化和形成的结构演化和形成的动力学路径。结果表明,浸入较差的溶剂中的BCP的过程指导的自组装导致形成条纹椭圆形,洋葱样颗粒和双尖层层状颗粒。该理论通过调节温度(与BCP的两个组成部分之间的温度有关,可以预测洋葱状颗粒和条纹椭圆形之间的形状跃迁路径,χ_{AB})和溶剂的选择性在两个BCP组件之一中。此外,展示了从洋葱样颗粒到双刺层层粒子的动力学路径,然后证明了返回洋葱样颗粒。通过研究BCP粒子的内结构演化,可以确定将中间双连续结构更改为分层的结构对于形成条纹椭圆形颗粒至关重要。另一个有趣的发现是,洋葱样颗粒的形成的特征是两阶段的微相分离。第一个是由溶剂偏好引起的,第二个由热力学控制。这些发现导致了为各种工业应用调整BCP颗粒纳米结构的有效方法。
The kinetic paths of structural evolution and formation of block copolymer (BCP) particles are explored using dynamic self-consistent field theory (DSCFT). It is shown that the process-directed self-assembly of BCP immersed in a poor solvent leads to the formation of striped ellipsoids, onion-like particles and double-spiral lamellar particles. The theory predicts a reversible path of shape transition between onion-like particles and striped ellipsoidal ones by regulating the temperature (related to the Flory-Huggins parameter between the two components of BCP, χ_{AB}) and the selectivity of solvent toward one of the two BCP components. Furthermore, a kinetic path of shape transition from onion-like particles to double-spiral lamellar particles, and then back to onion-like particles is demonstrated. By investigating the inner-structural evolution of a BCP particle, it is identified that changing the intermediate bi-continuous structure into a layered one is crucial for the formation of striped ellipsoidal particles. Another interesting finding is that the formation of onion-like particles is characterized by a two-stage microphase separation. The first is induced by the solvent preference, and the second is controlled by the thermodynamics. The findings lead to an effective way of tailoring nanostructure of BCP particles for various industrial applications.